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Pathogenic variants in SQOR encoding sulfide:quinone oxidoreductase are a potentially treatable cause of Leigh disease
Hydrogen sulfide, a signaling molecule formed mainly from cysteine, is catabolized by sulfide:quinone oxidoreductase (gene SQOR). Toxic hydrogen sulfide exposure inhibits complex IV. We describe children of two families with pathogenic variants in SQOR. Exome sequencing identified variants; SQOR enz...
Autores principales: | , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley & Sons, Inc.
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7484123/ https://www.ncbi.nlm.nih.gov/pubmed/32160317 http://dx.doi.org/10.1002/jimd.12232 |
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author | Friederich, Marisa W. Elias, Abdallah F. Kuster, Alice Laugwitz, Lucia Larson, Austin A. Landry, Aaron P. Ellwood‐Digel, Logan Mirsky, David M. Dimmock, David Haven, Jaclyn Jiang, Hua MacLean, Kenneth N. Styren, Katie Schoof, Jonathan Goujon, Louise Lefrancois, Thomas Friederich, Maike Coughlin, Curtis R. Banerjee, Ruma Haack, Tobias B. Van Hove, Johan L. K. |
author_facet | Friederich, Marisa W. Elias, Abdallah F. Kuster, Alice Laugwitz, Lucia Larson, Austin A. Landry, Aaron P. Ellwood‐Digel, Logan Mirsky, David M. Dimmock, David Haven, Jaclyn Jiang, Hua MacLean, Kenneth N. Styren, Katie Schoof, Jonathan Goujon, Louise Lefrancois, Thomas Friederich, Maike Coughlin, Curtis R. Banerjee, Ruma Haack, Tobias B. Van Hove, Johan L. K. |
author_sort | Friederich, Marisa W. |
collection | PubMed |
description | Hydrogen sulfide, a signaling molecule formed mainly from cysteine, is catabolized by sulfide:quinone oxidoreductase (gene SQOR). Toxic hydrogen sulfide exposure inhibits complex IV. We describe children of two families with pathogenic variants in SQOR. Exome sequencing identified variants; SQOR enzyme activity was measured spectrophotometrically, protein levels evaluated by western blotting, and mitochondrial function was assayed. In family A, following a brief illness, a 4‐year‐old girl presented comatose with lactic acidosis and multiorgan failure. After stabilization, she remained comatose, hypotonic, had neurostorming episodes, elevated lactate, and Leigh‐like lesions on brain imaging. She died shortly after. Her 8‐year‐old sister presented with a rapidly fatal episode of coma with lactic acidosis, and lesions in the basal ganglia and left cortex. Muscle and liver tissue had isolated decreased complex IV activity, but normal complex IV protein levels and complex formation. Both patients were homozygous for c.637G > A, which we identified as a founder mutation in the Lehrerleut Hutterite with a carrier frequency of 1 in 13. The resulting p.Glu213Lys change disrupts hydrogen bonding with neighboring residues, resulting in severely reduced SQOR protein and enzyme activity, whereas sulfide generating enzyme levels were unchanged. In family B, a boy had episodes of encephalopathy and basal ganglia lesions. He was homozygous for c.446delT and had severely reduced fibroblast SQOR enzyme activity and protein levels. SQOR dysfunction can result in hydrogen sulfide accumulation, which, consistent with its known toxicity, inhibits complex IV resulting in energy failure. In conclusion, SQOR deficiency represents a new, potentially treatable, cause of Leigh disease. |
format | Online Article Text |
id | pubmed-7484123 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | John Wiley & Sons, Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-74841232020-10-09 Pathogenic variants in SQOR encoding sulfide:quinone oxidoreductase are a potentially treatable cause of Leigh disease Friederich, Marisa W. Elias, Abdallah F. Kuster, Alice Laugwitz, Lucia Larson, Austin A. Landry, Aaron P. Ellwood‐Digel, Logan Mirsky, David M. Dimmock, David Haven, Jaclyn Jiang, Hua MacLean, Kenneth N. Styren, Katie Schoof, Jonathan Goujon, Louise Lefrancois, Thomas Friederich, Maike Coughlin, Curtis R. Banerjee, Ruma Haack, Tobias B. Van Hove, Johan L. K. J Inherit Metab Dis Original Articles Hydrogen sulfide, a signaling molecule formed mainly from cysteine, is catabolized by sulfide:quinone oxidoreductase (gene SQOR). Toxic hydrogen sulfide exposure inhibits complex IV. We describe children of two families with pathogenic variants in SQOR. Exome sequencing identified variants; SQOR enzyme activity was measured spectrophotometrically, protein levels evaluated by western blotting, and mitochondrial function was assayed. In family A, following a brief illness, a 4‐year‐old girl presented comatose with lactic acidosis and multiorgan failure. After stabilization, she remained comatose, hypotonic, had neurostorming episodes, elevated lactate, and Leigh‐like lesions on brain imaging. She died shortly after. Her 8‐year‐old sister presented with a rapidly fatal episode of coma with lactic acidosis, and lesions in the basal ganglia and left cortex. Muscle and liver tissue had isolated decreased complex IV activity, but normal complex IV protein levels and complex formation. Both patients were homozygous for c.637G > A, which we identified as a founder mutation in the Lehrerleut Hutterite with a carrier frequency of 1 in 13. The resulting p.Glu213Lys change disrupts hydrogen bonding with neighboring residues, resulting in severely reduced SQOR protein and enzyme activity, whereas sulfide generating enzyme levels were unchanged. In family B, a boy had episodes of encephalopathy and basal ganglia lesions. He was homozygous for c.446delT and had severely reduced fibroblast SQOR enzyme activity and protein levels. SQOR dysfunction can result in hydrogen sulfide accumulation, which, consistent with its known toxicity, inhibits complex IV resulting in energy failure. In conclusion, SQOR deficiency represents a new, potentially treatable, cause of Leigh disease. John Wiley & Sons, Inc. 2020-04-15 2020-09 /pmc/articles/PMC7484123/ /pubmed/32160317 http://dx.doi.org/10.1002/jimd.12232 Text en © 2020 The Authors. Journal of Inherited Metabolic Disease published by John Wiley & Sons Ltd on behalf of SSIEM This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made. |
spellingShingle | Original Articles Friederich, Marisa W. Elias, Abdallah F. Kuster, Alice Laugwitz, Lucia Larson, Austin A. Landry, Aaron P. Ellwood‐Digel, Logan Mirsky, David M. Dimmock, David Haven, Jaclyn Jiang, Hua MacLean, Kenneth N. Styren, Katie Schoof, Jonathan Goujon, Louise Lefrancois, Thomas Friederich, Maike Coughlin, Curtis R. Banerjee, Ruma Haack, Tobias B. Van Hove, Johan L. K. Pathogenic variants in SQOR encoding sulfide:quinone oxidoreductase are a potentially treatable cause of Leigh disease |
title | Pathogenic variants in SQOR encoding sulfide:quinone oxidoreductase are a potentially treatable cause of Leigh disease |
title_full | Pathogenic variants in SQOR encoding sulfide:quinone oxidoreductase are a potentially treatable cause of Leigh disease |
title_fullStr | Pathogenic variants in SQOR encoding sulfide:quinone oxidoreductase are a potentially treatable cause of Leigh disease |
title_full_unstemmed | Pathogenic variants in SQOR encoding sulfide:quinone oxidoreductase are a potentially treatable cause of Leigh disease |
title_short | Pathogenic variants in SQOR encoding sulfide:quinone oxidoreductase are a potentially treatable cause of Leigh disease |
title_sort | pathogenic variants in sqor encoding sulfide:quinone oxidoreductase are a potentially treatable cause of leigh disease |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7484123/ https://www.ncbi.nlm.nih.gov/pubmed/32160317 http://dx.doi.org/10.1002/jimd.12232 |
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