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The TIM22 complex mediates the import of sideroflexins and is required for efficient mitochondrial one-carbon metabolism.


ABSTRACT: Acylglycerol kinase (AGK) is a mitochondrial lipid kinase that contributes to protein biogenesis as a subunit of the TIM22 complex at the inner mitochondrial membrane. Mutations in AGK cause Sengers syndrome, an autosomal recessive condition characterized by congenital cataracts, hypertrophic cardiomyopathy, skeletal myopathy, and lactic acidosis. We mapped the proteomic changes in Sengers patient fibroblasts and AGKKO cell lines to understand the effects of AGK dysfunction on mitochondria. This uncovered down-regulation of a number of proteins at the inner mitochondrial membrane, including many SLC25 carrier family proteins, which are predicted substrates of the complex. We also observed down-regulation of SFXN proteins, which contain five transmembrane domains, and show that they represent a novel class of TIM22 complex substrate. Perturbed biogenesis of SFXN proteins in cells lacking AGK reduces the proliferative capabilities of these cells in the absence of exogenous serine, suggesting that dysregulation of one-carbon metabolism is a molecular feature in the biology of Sengers syndrome.

SUBMITTER: Jackson TD 

PROVIDER: S-EPMC8101445 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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The TIM22 complex mediates the import of sideroflexins and is required for efficient mitochondrial one-carbon metabolism.

Jackson Thomas D TD   Hock Daniella H DH   Fujihara Kenji M KM   Palmer Catherine S CS   Frazier Ann E AE   Low Yau C YC   Kang Yilin Y   Ang Ching-Seng CS   Clemons Nicholas J NJ   Thorburn David R DR   Stroud David A DA   Stojanovski Diana D  

Molecular biology of the cell 20210121 6


Acylglycerol kinase (AGK) is a mitochondrial lipid kinase that contributes to protein biogenesis as a subunit of the TIM22 complex at the inner mitochondrial membrane. Mutations in <i>AGK</i> cause Sengers syndrome, an autosomal recessive condition characterized by congenital cataracts, hypertrophic cardiomyopathy, skeletal myopathy, and lactic acidosis. We mapped the proteomic changes in Sengers patient fibroblasts and AGK<sup>KO</sup> cell lines to understand the effects of AGK dysfunction on  ...[more]

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