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Hjertkvist, Karin
Publications (3 of 3) Show all publications
Leykam, L., Forsberg, K., Nordström, U., Hjertkvist, K., Öberg, A., Jonsson, E., . . . Zetterström, P. (2024). Specific analysis of SOD1 enzymatic activity in CSF from ALS patients with and without SOD1 mutations. Neurobiology of Disease, 202, Article ID 106718.
Open this publication in new window or tab >>Specific analysis of SOD1 enzymatic activity in CSF from ALS patients with and without SOD1 mutations
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2024 (English)In: Neurobiology of Disease, ISSN 0969-9961, E-ISSN 1095-953X, Vol. 202, article id 106718Article in journal (Refereed) Published
Abstract [en]

Mutations in superoxide dismutase-1 (SOD1) are a cause of hereditary amyotrophic lateral sclerosis (ALS) through a gain-of-function mechanism involving unfolded mutant SOD1. Intrathecal gene therapy using the antisense-oligo-nucleotide drug tofersen to reduce SOD1 expression delays disease progression and has recently been approved in the United States and the European Union. However, the discovery of children homozygous for inactivating SOD1 mutations developing the SOD1 Deficiency Syndrome (ISODDES) with injury to the motor system suggests that a too low SOD1 antioxidant activity may be deleterious in humans. Measuring SOD1 activity in cerebrospinal fluid (CSF) in tofersen-treated patients is recommended but difficult due to low concentration and the presence of the isoenzyme SOD3. We here present a sensitive method to assess SOD1 activity by removing SOD3 from CSF samples using highly specific immobilized antibodies and subsequent measurement of the SOD activity. We validated the method on 171 CSF samples from ALS patients with and without mutations and controls and used paired erythrocyte samples for comparison. We found that in ALS patients with wildtype SOD1, the SOD1 activity in CSF was equal to controls, but patients with mutant SOD1 show lower activity in CSF, even for patients with mutants previously reported to have full activity in erythrocytes. Activity variation in CSF was large among patients carrying the same SOD1 mutation and larger than in erythrocytes and in post-mortem nervous tissue. Additionally, we identified a discrepancy between the SOD1 activity and protein level measured with ELISA in both CSF and erythrocytes. Since antibodies used for SOD1 ELISA-quantification are raised against the natively folded wildtype SOD1, the concentration of mutant SOD1s may be underestimated. Analysis of SOD1 enzymatic activity in CSF is therefore a more reliable way to monitor the effect of SOD1-lowering drugs.

Place, publisher, year, edition, pages
Elsevier, 2024
Keywords
ALS, Amyotrophic lateral sclerosis, Cerebrospinal fluid, SOD1 activity, SOD1 loss-of-function
National Category
Neurosciences Other Clinical Medicine
Identifiers
urn:nbn:se:umu:diva-231645 (URN)10.1016/j.nbd.2024.106718 (DOI)001349855900001 ()39490682 (PubMedID)2-s2.0-85207756868 (Scopus ID)
Available from: 2024-11-19 Created: 2024-11-19 Last updated: 2026-02-02Bibliographically approved
Keskin, I., Birve, A., Berdynski, M., Hjertkvist, K., Rofougaran, R., Nilsson, T. K., . . . Andersen, P. M. (2017). Comprehensive analysis to explain reduced or increased SOD1 enzymatic activity in ALS patients and their relatives. Amyotrophic Lateral Sclerosis and Frontotemporal Degeneration, 18(5-6), 457-463
Open this publication in new window or tab >>Comprehensive analysis to explain reduced or increased SOD1 enzymatic activity in ALS patients and their relatives
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2017 (English)In: Amyotrophic Lateral Sclerosis and Frontotemporal Degeneration, ISSN 2167-8421, E-ISSN 2167-9223, Vol. 18, no 5-6, p. 457-463Article in journal (Refereed) Published
Abstract [en]

Objective: To characterise stabilities in erythrocytes of mutant SOD1 proteins, compare SOD1 enzymatic activities between patients with different genetic causes of ALS and search for underlying causes of deviant SOD1 activities in individuals lacking SOD1 mutations.Methods: Blood samples from 4072 individuals, ALS patients with or without a SOD1 mutation, family members and controls were studied. Erythrocyte SOD1 enzymatic activities normalised to haemoglobin content were determined, and effects of haemoglobin disorders on dismutation assessed. Coding SOD1 sequences were analysed by Sanger sequencing, exon copy number variations by fragment length analysis and by TaqMan Assay.Results: Of the 44 SOD1 mutations found, 75% caused severe destabilisation of the mutant protein but in 25% it was physically stable. Mutations producing structural changes caused halved erythrocyte SOD1 activities. There were no differences in SOD1 activities between patients without a SOD1 mutation and control individuals or carriers of TBK1 mutations and C9orf72(HRE). In the low and high SOD1 activity groups no deviations were found in exon copy numbers and intron gross structures. Thalassemias and iron deficiency were associated with increased SOD1 activity/haemoglobin ratios.Conclusion: Adjunct erythrocyte SOD1 activity analysis reliably signals destabilising SOD1 mutations including intronic mutations that are missed by exon sequencing.

Place, publisher, year, edition, pages
TAYLOR & FRANCIS LTD, 2017
Keywords
Amyotrophic lateral sclerosis, superoxide dismutase, mutation, enzymatic activity
National Category
Clinical Medicine
Identifiers
urn:nbn:se:umu:diva-138241 (URN)10.1080/21678421.2017.1301481 (DOI)000405584600019 ()2-s2.0-85015830747 (Scopus ID)
Available from: 2017-08-16 Created: 2017-08-16 Last updated: 2024-07-02Bibliographically approved
Keskin, I., Birve, A., Berdynski, M., Hjertkvist, K., Rofougaran, R., Nilsson, T. K., . . . Andersen, P. M.Comprehensive analysis to explain reduced or increased SOD1 enzymatic activity in erythrocytes in ALS patients and their relatives.
Open this publication in new window or tab >>Comprehensive analysis to explain reduced or increased SOD1 enzymatic activity in erythrocytes in ALS patients and their relatives
Show others...
(English)Manuscript (preprint) (Other academic)
Abstract [en]

Our objective was to in blood samples from 3723 individuals including ALS patients without a coding SOD1 mutation and 372 control individuals characterize stabilities of mutant SOD1s, compare SOD1 enzymatic activities between patients with different genetic causes of ALS, and search for underlying causes of deviant SOD1 activities in individuals lacking SOD1 mutations. Erythrocyte SOD1 enzymatic activities normalized to hemoglobin content were determined. Coding SOD1 sequences were analyzed by Sanger sequencing, copy number variations by fragment length analysis and by TaqMan Assay. Hemoglobin disorders were searched for. Of the 46 SOD1 mutations found, ¾ caused severe destabilization of the mutant protein but in ¼ SOD1 was essentially physically stable. Mutations producing structural changes all caused halved SOD activities. There were no differences in SOD1 activities between controls and patients without any detected SOD1 mutations or patients with C9ORF72HRE or TBK1 mutations. In the low and high SOD1 activity groups no deviations were found in exon copy numbers and intron gross structures. Also, no uncommon variants in exon-flanking sequences were detected. Thalassemias and iron deficiency anemia were associated with increased SOD1 activity/hemoglobin ratios. In conclusion, adjunct erythrocyte SOD activity analysis is of value to signal the presence of exon and splice-site-intron mutations that influence the SOD1 structure.

National Category
Biochemistry Molecular Biology Medical and Health Sciences
Identifiers
urn:nbn:se:umu:diva-124955 (URN)
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Available from: 2016-08-31 Created: 2016-08-31 Last updated: 2025-02-20Bibliographically approved
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