Umeå University's logo

umu.sePublications
Change search
Link to record
Permanent link

Direct link
Wallgren, Marcus
Publications (10 of 15) Show all publications
Ådén, J., Ul Mushtaq, A., Dingeldein, A. P. G., Wallgren, M. & Gröbner, G. (2020). A novel recombinant expression and purification approach for the full-length anti-apoptotic membrane protein Bcl-2. Protein Expression and Purification, 172, Article ID 105628.
Open this publication in new window or tab >>A novel recombinant expression and purification approach for the full-length anti-apoptotic membrane protein Bcl-2
Show others...
2020 (English)In: Protein Expression and Purification, ISSN 1046-5928, E-ISSN 1096-0279, Vol. 172, article id 105628Article in journal (Refereed) Published
Abstract [en]

Programmed cell death (apoptosis) is an essential mechanism in life that tightly regulates embryogenesis and removal of harmful cells. Besides an extrinsic pathway, an intrinsic (mitochondrial) apoptotic pathway exists where mitochondria are actively involved in cellular clearance in response to internal stress signals. Pro-apoptotic (death) and anti-apoptotic (survival) members of the B cell CLL/lymphoma-2 (Bcl-2) protein family meet at the mitochondrion's surface where they accurately regulate apoptosis. Overexpression of the anti-apoptotic Bcl-2 protein is a hallmark for many types of cancers and in particular for many treatment resistant tumors. Bcl-2 is a membrane protein residing in the mitochondrial outer membrane. Due to its typical membrane protein features including very limited solubility, it is difficult to express and to purify. Therefore, most biophysical and structural studies have used truncated, soluble versions. However, to understand its membrane-coupled function and structure, access to sufficient amount of full-length human Bcl-2 protein is a necessity. Here, we present a novel, E. coli based approach for expression and purification of preparative amounts of the full-length human isoform 2 of Bcl-2 (Bcl-2(2)), solubilized in detergent micelles, which allows for easy exchange of the detergent.

Place, publisher, year, edition, pages
Elsevier, 2020
Keywords
Apoptosis, Pro-survival Bcl-2 protein, High-yield expression, Full-length membrane protein, Detergent exchange
National Category
Medical Biotechnology (with a focus on Cell Biology (including Stem Cell Biology), Molecular Biology, Microbiology, Biochemistry or Biopharmacy) Biochemistry Molecular Biology Cell Biology Biophysics
Identifiers
urn:nbn:se:umu:diva-169249 (URN)10.1016/j.pep.2020.105628 (DOI)000531018500007 ()32209420 (PubMedID)2-s2.0-85082324143 (Scopus ID)
Available from: 2020-03-27 Created: 2020-03-27 Last updated: 2025-02-20Bibliographically approved
Mohammad, J. B., Wallgren, M. & Sabouri, N. (2018). The Pif1 signature motif of Pfh1 is necessary for both protein displacement and helicase unwinding activities, but is dispensable for strand-annealing activity. Nucleic Acids Research, 46(16), 8516-8531
Open this publication in new window or tab >>The Pif1 signature motif of Pfh1 is necessary for both protein displacement and helicase unwinding activities, but is dispensable for strand-annealing activity
2018 (English)In: Nucleic Acids Research, ISSN 0305-1048, E-ISSN 1362-4962, Vol. 46, no 16, p. 8516-8531Article in journal (Refereed) Published
Abstract [en]

Pfh1, the sole member of the Pif1 helicases in Schizosaccharomyces pombe, is multifunctional and essential for maintenance of both the nuclear and mitochondrial genomes. However, we lack mechanistic insights into the functions of Pfh1 and its different motifs. This paper is specifically concerned with the importance of the Pif1 signature motif (SM), a 23 amino acids motif unique to Pif1 helicases, because a single amino acid substitution in this motif is associated with increased risk of breast cancer in humans and inviability in S. pombe. Here we show that the nuclear isoform of Pfh1 (nPfh1) unwound RNA/DNA hybrids more efficiently than DNA/DNA, suggesting that Pfh1 resolves RNA/DNA structures like R-loops in vivo. In addition, nPfh1 displaced proteins from DNA and possessed strand-annealing activity. The unwinding and protein displacement activities were dependent on the SM because nPfh1 without a large portion of this motif (nPfh1-Δ21) or with the disease/inviability-linked mutation (nPfh1-L430P) lost these properties. Unexpectedly, both nPfh1-L430P and nPfh1-Δ21 still displayed binding to G-quadruplex DNA and demonstrated strand-annealing activity. Misregulated strand annealing and binding of nPfh1-L430P without unwinding are perhaps the reasons that cells expressing this allele are inviable.

Place, publisher, year, edition, pages
Oxford University Press, 2018
National Category
Biochemistry Molecular Biology
Identifiers
urn:nbn:se:umu:diva-151172 (URN)10.1093/nar/gky654 (DOI)000450950500040 ()30053106 (PubMedID)2-s2.0-85060311234 (Scopus ID)
Funder
Swedish Research CouncilKnut and Alice Wallenberg Foundation
Available from: 2018-08-29 Created: 2018-08-29 Last updated: 2025-02-20Bibliographically approved
Wallgren, M., Mohammad, J. B., Yan, K.-P., Pourbozorgi-Langroudi, P., Ebrahimi, M. & Sabouri, N. (2016). G-rich telomeric and ribosomal DNA sequences from the fission yeast genome form stable G-quadruplex DNA structures in vitro and are unwound by the Pfh1 DNA helicase. Nucleic Acids Research, 44(13), 6213-6231
Open this publication in new window or tab >>G-rich telomeric and ribosomal DNA sequences from the fission yeast genome form stable G-quadruplex DNA structures in vitro and are unwound by the Pfh1 DNA helicase
Show others...
2016 (English)In: Nucleic Acids Research, ISSN 0305-1048, E-ISSN 1362-4962, Vol. 44, no 13, p. 6213-6231Article in journal (Refereed) Published
Abstract [en]

Certain guanine-rich sequences have an inherent propensity to form G-quadruplex (G4) structures. G4 structures are e.g. involved in telomere protection and gene regulation. However, they also constitute obstacles during replication if they remain unresolved. To overcome these threats to genome integrity, organisms harbor specialized G4 unwinding helicases. In Schizosaccharomyces pombe, one such candidate helicase is Pfh1, an evolutionarily conserved Pif1 homolog. Here, we addressed whether putative G4 sequences in S. pombe can adopt G4 structures and, if so, whether Pfh1 can resolve them. We tested two G4 sequences, derived from S. pombe ribosomal and telomeric DNA regions, and demonstrated that they form inter- and intramolecular G4 structures, respectively. Also, Pfh1 was enriched in vivo at the ribosomal G4 DNA and telomeric sites. The nuclear isoform of Pfh1 (nPfh1) unwound both types of structure, and although the G4-stabilizing compound Phen-DC3 significantly enhanced their stability, nPfh1 still resolved them efficiently. However, stable G4 structures significantly inhibited adenosine triphosphate hydrolysis by nPfh1. Because ribosomal and telomeric DNA contain putative G4 regions conserved from yeasts to humans, our studies support the important role of G4 structure formation in these regions and provide further evidence for a conserved role for Pif1 helicases in resolving G4 structures.

Place, publisher, year, edition, pages
Oxford University Press, 2016
National Category
Biochemistry Molecular Biology
Identifiers
urn:nbn:se:umu:diva-124639 (URN)10.1093/nar/gkw349 (DOI)000382999300021 ()27185885 (PubMedID)2-s2.0-84982815551 (Scopus ID)
Available from: 2016-08-18 Created: 2016-08-18 Last updated: 2025-02-20Bibliographically approved
Lidman, M., Pokorná, Š., Dingeldein, A. P. G., Sparrman, T., Wallgren, M., Šachl, R., . . . Gröbner, G. (2016). The oxidized phospholipid PazePC promotes permeabilization of mitochondrial membranes by Bax. Biochimica et Biophysica Acta - Biomembranes, 1858(6), 1288-1297
Open this publication in new window or tab >>The oxidized phospholipid PazePC promotes permeabilization of mitochondrial membranes by Bax
Show others...
2016 (English)In: Biochimica et Biophysica Acta - Biomembranes, ISSN 0005-2736, E-ISSN 1879-2642, Vol. 1858, no 6, p. 1288-1297Article in journal (Refereed) Published
Abstract [en]

Mitochondria play a crucial role in programmed cell death via the intrinsic apoptotic pathway, which is tightly regulated by the B-cell CLL/lymphoma-2 (Bcl-2) protein family. Intracellular oxidative stress causes the translocation of Bax, a pro-apoptotic family member, to the mitochondrial outer membrane (MOM) where it induces membrane permeabilization. Oxidized phospholipids (OxPls) generated in the MOM during oxidative stress directly affect the onset and progression of mitochondria-mediated apoptosis. Here we use MOM-mimicking lipid vesicles doped with varying concentrations of 1-palmitoyl-2-azelaoyl-sn-glycero-3-phosphocholine (PazePC), an OxPl species known to significantly enhance Bax-membrane association, to investigate three key aspects of Bax's action at the MOM: 1) induction of Bax pores in membranes without additional mediator proteins, 2) existence of a threshold OxPl concentration required for Bax-membrane action and 3) mechanism by which PazePC disturbs membrane organization to facilitate Bax penetration. Fluorescence leakage studies revealed that Bax-induced leakage, especially its rate, increased with the vesicles' PazePC content without any detectable threshold neither for OxPl nor Bax. Moreover, the leakage rate correlated with the Bax to lipid ratio and the PazePC content. Solid state NMR studies and calorimetric experiments on the lipid vesicles confirmed that OxPl incorporation disrupted the membrane's organization, enabling Bax to penetrate into the membrane. In addition, 15N cross polarization (CP) and insensitive nuclei enhanced by polarization transfer (INEPT) MAS NMR experiments using uniformly 15N-labeled Bax revealed dynamically restricted helical segments of Bax embedded in the membrane, while highly flexible protein segments were located outside or at the membrane surface.

Keywords
Apoptosis, Bax-protein, Calorimetry, Membranes, NMR, Oxidized phospholipids, Leakage
National Category
Chemical Sciences
Research subject
Biochemistry; Physical Chemistry
Identifiers
urn:nbn:se:umu:diva-110699 (URN)10.1016/j.bbamem.2016.03.003 (DOI)000375356900023 ()2-s2.0-84961771300 (Scopus ID)
Note

Originally published in manuscript form with the title The oxidized phospholipid PazePC promotes the formation of Bax pores in mitochondrial membranes

Available from: 2015-10-26 Created: 2015-10-26 Last updated: 2023-03-24Bibliographically approved
Lidman, M., Wallgren, M. & Gröbner, G. (2014). Membranes and their lipids: a molecular insight into their organization and function (1ed.). In: Frances Separovic and Akira Naito (Ed.), Advances in Biological Solid-State NMR: proteins and Membrane-Active Peptides (pp. 113-132). Cambridge, GBR: Royal Society of Chemistry
Open this publication in new window or tab >>Membranes and their lipids: a molecular insight into their organization and function
2014 (English)In: Advances in Biological Solid-State NMR: proteins and Membrane-Active Peptides / [ed] Frances Separovic and Akira Naito, Cambridge, GBR: Royal Society of Chemistry, 2014, 1, p. 113-132Chapter in book (Refereed)
Place, publisher, year, edition, pages
Cambridge, GBR: Royal Society of Chemistry, 2014 Edition: 1
Series
New Developments in NMR, ISSN 2044-253X ; 3
National Category
Chemical Sciences
Identifiers
urn:nbn:se:umu:diva-110698 (URN)978-1-84973-910-8 (pISBN) (ISBN)9781782627449 (ISBN)
Available from: 2015-10-26 Created: 2015-10-26 Last updated: 2018-06-07Bibliographically approved
Wallgren, M., Beranova, L., Pham, Q. D., Khanh, L., Lidman, M., Procek, J., . . . Gröbner, G. (2013). Impact of oxidized phospholipids on the structural and dynamic organization of phospholipid membranes: a combined DSC and solid state NMR study. Faraday discussions, 161, 499-513
Open this publication in new window or tab >>Impact of oxidized phospholipids on the structural and dynamic organization of phospholipid membranes: a combined DSC and solid state NMR study
Show others...
2013 (English)In: Faraday discussions, ISSN 1359-6640, E-ISSN 1364-5498, Vol. 161, p. 499-513Article in journal (Refereed) Published
Abstract [en]

Membranes undergo severe changes under oxidative stress conditions due to the creation of oxidized phospholipid (OxPls) species which possess molecular properties quite different from their parental lipid components. These OxPls play crucial roles in various pathological disorders and their occurrence is involved in the onset of intrinsic apoptosis, a fundamental pathway in programmed mammalian cell death. However, the molecular mechanisms by which these lipids can exert their apoptotic action via their host membranes (e.g. altering membrane protein function) are poorly understood. Therefore, we studied the impact of OxPls on the organization and biophysical properties of 1,2-dimyristoyl-sn-glycero-3-phosphocholine (DMPC) based lipid membranes by differential scanning calorimetry (DSC) and solid state nuclear magnetic resonance (NMR) spectroscopy. Incorporation of defined OxPls with either a carboxyl group (1-Palmitoyl-2-azelaoyl-sn-glycero-3-phosphocholine (PazePC)) or aldehyde (1-Palmitoyl-(9´oxononanoyl)-sn-glycero-3-phosphocholine (PoxnoPC)) at their truncated sn-2-chain ends enabled us to reveal OxPls species dependent differences. The calorimetric studies revealed significant effects of OxPls on the thermotropic phase behavior of DMPC bilayers, especially at elevated levels where PazePC induced more pronounced effects than PoxnoPC. Temperature dependent changes in the solid state 31P NMR spectra which provided information of the of lipid headgroup region in these mixed membrane system, reflected this complex phase behavior. In the temperature region between 293 K (onset of L-phase) and 298 K two overlapping NMR spectra were visible which reflect the co-existence of two liquid-crystalline lamellar phases with presumably one reflecting OxPls-poor domains and the other OxPls-rich domains. Deconvolution of the DSC profiles also revealed these two partially overlapping thermal events. In addition, also a third thermal, non NMR-visible, event occurred at low temperatures, which mostly likely can be associated with a solid-phase mixing/demixing process of the OxPl-containing membranes. The observed phase transitions were moved to higher temperatures in the presence of heavy water due its condensing effect, where additional wideline 2H NMR studies revealed a complex hydration pattern in the presence of OxPls.

Place, publisher, year, edition, pages
RSC Publishing, 2013
National Category
Physical Chemistry
Identifiers
urn:nbn:se:umu:diva-58036 (URN)10.1039/C2FD20089A (DOI)000313970200025 ()23805755 (PubMedID)2-s2.0-84883004226 (Scopus ID)
Note

First published online 27 Jun 2012

Available from: 2012-08-24 Created: 2012-08-24 Last updated: 2023-03-24Bibliographically approved
Wallgren, M., Lidman, M., Pedersen, A., Brännström, K., Karlsson, B. G. & Gröbner, G. (2013). Reconstitution of the anti-apoptotic bcl-2 protein into lipid membranes and biophysical evidence for its detergent-driven association with the pro-apoptotic bax protein. PLOS ONE, 8(4), Article ID e61452.
Open this publication in new window or tab >>Reconstitution of the anti-apoptotic bcl-2 protein into lipid membranes and biophysical evidence for its detergent-driven association with the pro-apoptotic bax protein
Show others...
2013 (English)In: PLOS ONE, E-ISSN 1932-6203, Vol. 8, no 4, article id e61452Article in journal (Refereed) Published
Abstract [en]

The anti-apoptotic B-cell CLL/lymphoma-2 (Bcl-2) protein and its counterpart, the pro-apoptotic Bcl-2-associated X protein (Bax), are key players in the regulation of the mitochondrial pathway of apoptosis. However, how they interact at the mitochondrial outer membrane (MOM) and there determine whether the cell will live or be sentenced to death remains unknown. Competing models have been presented that describe how Bcl-2 inhibits the cell-killing activity of Bax, which is common in treatment-resistant tumors where Bcl-2 is overexpressed. Some studies suggest that Bcl-2 binds directly to and sequesters Bax, while others suggest an indirect process whereby Bcl-2 blocks BH3-only proteins and prevents them from activating Bax. Here we present the results of a biophysical study in which we investigated the putative interaction of solubilized full-length human Bcl-2 with Bax and the scope for incorporating the former into a native-like lipid environment. Far-UV circular dichroism (CD) spectroscopy was used to detect direct Bcl-2-Bax-interactions in the presence of polyoxyethylene-(23)-lauryl-ether (Brij-35) detergent at a level below its critical micelle concentration (CMC). Additional surface plasmon resonance (SPR) measurements confirmed this observation and revealed a high affinity between the Bax and Bcl-2 proteins. Upon formation of this protein-protein complex, Bax also prevented the binding of antimycin A2 (a known inhibitory ligand of Bcl-2) to the Bcl-2 protein, as fluorescence spectroscopy experiments showed. In addition, Bcl-2 was able to form mixed micelles with Triton X-100 solubilized neutral phospholipids in the presence of high concentrations of Brij-35 (above its CMC). Following detergent removal, the integral membrane protein was found to have been fully reconstituted into a native-like membrane environment, as confirmed by ultracentrifugation and subsequent SDS-PAGE experiments.

Place, publisher, year, edition, pages
PLoS ONE, 2013
National Category
Chemical Sciences
Identifiers
urn:nbn:se:umu:diva-70192 (URN)10.1371/journal.pone.0061452 (DOI)000318008400049 ()23626686 (PubMedID)2-s2.0-84876544977 (Scopus ID)
Available from: 2013-05-07 Created: 2013-05-07 Last updated: 2023-03-24Bibliographically approved
Wallgren, M. (2012). Insight into the mitochondrial apoptotic pathway: The interplay of the pro-apoptotic Bax protein with oxidized phospholipids and its counterplayer, the pro-survival Bcl-2 protein. (Doctoral dissertation). Umeå: Umeå universitet
Open this publication in new window or tab >>Insight into the mitochondrial apoptotic pathway: The interplay of the pro-apoptotic Bax protein with oxidized phospholipids and its counterplayer, the pro-survival Bcl-2 protein
2012 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

Apoptosis plays a crucial role in multicellular organisms by preserving tissue homeostasis and removing harmful cells. The anti-apoptotic B-cell CLL/lymphoma 2 (Bcl-2) and the pro-apoptotic Bcl-2-associated X protein (Bax) act as major regulators of the mitochondrial apoptotic pathway. Activation of Bax via stress signals causes its translocation to the mitochondrial outer membrane (MOM). There, Bax forms homo-oligomeric pores, leading to the release of apoptogenic factors, caspase activation and ultimately cell death. However, the underlying mechanism for the recruitment and pore forming activity of Bax is still not elucidated. Nevertheless, the mitochondrial membrane system seems to play an active and crucial role, presumably being directly involved in the onset of the mitochondrial apoptosis. Since the formation of reactive oxygen species (ROS) is a common stress signal and one of the hallmarks of the mitochondrial apoptosis, direct damage can occur to these membranes by the generation of oxidized phospholipids (OxPls), whose presence can crucially influence the pro-apoptotic action of Bax there. To better understand the impact of OxPls on membranes as well as their potential role in the mitochondrial apoptotic process, defined OxPl species were incorporated into phospholipid vesicles and studied with various biophysical techniques. Differential scanning calorimetry (DSC) and solid state nuclear magnetic resonance (NMR) spectroscopy were used to gain insight into changes in membrane properties in the presence of OxPls. In addition to circular dichroism (CD) spectroscopy, DSC and solid state NMR were furthermore performed to elucidate the impact of OxPls on Bax-membrane interactions. The occurrence of OxPls gave rise to dramatic changes in membrane organization and dynamics, manifested as lateral phase separation into OxPl-rich and -poor domains and modified hydration at the membrane interface. The presence of OxPls also had a great impact on the interaction between Bax and mitochondria-mimicking vesicles, strongly promoting the association of the protein with the membrane.

At the MOM, Bax is believed to be inhibited by Bcl-2. How this inhibition occurs is still a mystery due to the lack of biophysical information on Bcl-2, in particular on the full-length protein variant. Since Bcl-2 is also one of the main culprits in the progression of various forms of cancer, knowledge of the structural and mechanistic properties of the full-length protein is essential for a fundamental understanding of its function at a molecular level. To this end, a method for the production of full-length Bcl-2 was developed. By performing cell-free protein synthesis, preparative amounts of the protein were obtained, which enabled a biophysical characterization of the putative interaction between Bax and Bcl-2 using CD and fluorescence spectroscopy. A protocol for the reconstitution of Bcl-2 into proteoliposomes was also developed, promising for future studies of the full-length protein in its native membrane environment; a prerequisite to fully understand its pro-survival functions as well as providing crucial information for the design of novel anti-cancer drugs.

Place, publisher, year, edition, pages
Umeå: Umeå universitet, 2012. p. 62
Keywords
apoptosis, Bax, Bcl-2, CD, cell-free protein synthesis, DSC, membrane, mitochondria, oxidized phospholipids, reconstitution, solid state NMR
National Category
Biophysics
Research subject
biological chemistry
Identifiers
urn:nbn:se:umu:diva-61290 (URN)978-91-7459-490-4 (ISBN)
Public defence
2012-11-30, KBC-huset, KB3B1, Umeå universitet, Umeå, 10:00 (English)
Opponent
Supervisors
Available from: 2012-11-09 Created: 2012-11-07 Last updated: 2025-02-20Bibliographically approved
Wallgren, M., Lidman, M., Pham, Q. D., Cyprych, K. & Gröbner, G. (2012). The oxidized phospholipid PazePC modulates interactions between Bax and mitochondrial membranes. Biochimica et Biophysica Acta - Biomembranes, 1818(11), 2718-2724
Open this publication in new window or tab >>The oxidized phospholipid PazePC modulates interactions between Bax and mitochondrial membranes
Show others...
2012 (English)In: Biochimica et Biophysica Acta - Biomembranes, ISSN 0005-2736, E-ISSN 1879-2642, Vol. 1818, no 11, p. 2718-2724Article in journal (Refereed) Published
Abstract [en]

Activation of the pro-apoptotic protein Bax under intracellular oxidative stress is closely related to its association with the mitochondrial outer membrane (MOM) system, ultimately resulting in cell death. The precise mechanism by which this activation and the subsequent structural changes in the protein occur is currently unknown. In addition to triggering the onset of apoptosis, oxidative stress generates oxidized lipids whose impact on mitochondrial membrane integrity and the activity of membrane-associated Bax is unclear. We therefore devised a model system that mimics oxidative stress conditions by incorporating oxidized phospholipids (OxPls) into mitochondria-like liposomes, and studied the OxPls' impact on Bax-membrane interactions. Differential scanning calorimetry (DSC) was used to study membrane organization and protein stability, while conformational changes in the protein upon contact with lipid vesicles were monitored using far-UV circular dichroism (CD) spectroscopy. The thermograms for liposomes containing the OxPl 1-palmitoyl-2-azelaoyl-sn-glycero-3-phosphocholine (PazePC) differed dramatically from those for unmodified liposomes. Moreover, Bax exhibited enhanced thermal stability in the presence of the modified liposomes, indicating that it interacted strongly with PazePC-containing membranes. The presence of PazePC also increased the α-helical character of Bax compared to the protein alone or with PazePC-free vesicles, at 10°C, 20°C, and 37°C. Presumably, the presence of PazePC-like OxPls a) increases the population of membrane-associated Bax and b) facilitates the protein's insertion into the membrane by distorting the bilayer's organization, as seen by solid-state high-resolution (1)H and (31)P magic angle spinning nuclear magnetic resonance (MAS NMR) spectroscopy.

Place, publisher, year, edition, pages
Elsevier, 2012
Keywords
Apoptosis, Bax, CD, DSC, MAS NMR, PazePC
National Category
Chemical Sciences
Identifiers
urn:nbn:se:umu:diva-56762 (URN)10.1016/j.bbamem.2012.06.005 (DOI)22705638 (PubMedID)2-s2.0-84864038945 (Scopus ID)
Available from: 2012-06-26 Created: 2012-06-26 Last updated: 2023-03-24Bibliographically approved
Pedersen, A., Wallgren, M., Karlsson, B. G. & Gröbner, G. (2011). Expression and purification of full-length anti-apoptotic Bcl-2 using cell-free protein synthesis. Protein Expression and Purification, 77(2), 220-223
Open this publication in new window or tab >>Expression and purification of full-length anti-apoptotic Bcl-2 using cell-free protein synthesis
2011 (English)In: Protein Expression and Purification, ISSN 1046-5928, E-ISSN 1096-0279, Vol. 77, no 2, p. 220-223Article in journal (Refereed) Published
Abstract [en]

The anti-apoptotic B cell CLL/lymphoma-2 (Bcl-2) protein is a key player in the regulation of programmed cell death and is linked to various types of cancer and their resistance to drug treatment. Biophysical and structural studies of the full-length intact Bcl-2 have been hampered due to difficulties in expression and severe solubility problems, precluding isolation of this hydrophobic membrane protein. Therefore, previous work has so far mainly been carried out using structurally modified Bcl-2 variants, lacking the transmembrane region. Thus, biophysical information regarding the full-length protein is still missing. Here, a protocol is presented for expression and purification of preparative amounts of the full-length human isoform 2 of Bcl-2 (Bcl-2(2)). A batch-based cell-free expression system, using extract isolated from Escherichia coli (E. coli) was employed to produce recombinant protein encoded by an optimized gene sequence. Presence of polyoxyethylene-(20)-cetyl-ether (Brij-58) in the reaction mixture and subsequently in the immobilized metal-affinity purification steps was crucial to keep Bcl-2(2) soluble. The obtained yield was 0.25-0.3mg per ml of cell-free reaction. Far-UV circular dichroism (CD) spectroscopy confirmed the α-helical structure of the purified protein, characteristic for members of the Bcl-2 protein family.

Place, publisher, year, edition, pages
Elsevier Inc, 2011
Keywords
Apoptosis, Bcl-2, Cell-free protein synthesis, Full-length protein, Optimized gene
National Category
Organic Chemistry
Identifiers
urn:nbn:se:umu:diva-40403 (URN)10.1016/j.pep.2011.02.003 (DOI)21315822 (PubMedID)2-s2.0-79952627633 (Scopus ID)
Available from: 2011-03-10 Created: 2011-02-22 Last updated: 2023-03-23Bibliographically approved
Organisations

Search in DiVA

Show all publications