Institute of Fundamental Technological Research
Polish Academy of Sciences

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Remigiusz Adam Serwa


Recent publications
1.  Elancheliyan P., Maruszczak K., Serwa R. A., Stephan T., Gulgec A. S., Borrero-Landazabal M., Ngati S., Gosk A., Jakobs S., Wasilewski M., Chacinska A., OCIAD1 and prohibitins regulate the stability of the TIM23 protein translocase, Cell Reports, ISSN: 2639-1856, DOI: 10.1016/j.celrep.2024.115038, Vol.43, No.12, pp.115038-1-22, 2024

Abstract:
Mitochondrial proteins are transported and sorted to the matrix or inner mitochondrial membrane by the presequence translocase TIM23. In yeast, this essential and highly conserved machinery is composed of the core subunits Tim23 and Tim17. The architecture, assembly, and regulation of the human TIM23 complex are poorly characterized. The human genome encodes two paralogs, TIMM17A and TIMM17B. Here, we describe an unexpected role of the ovarian cancer immunoreactive antigen domain-containing protein 1 (OCIAD1) and the prohibitin complex in the biogenesis of human TIM23. Prohibitins were required to stabilize both the TIMM17A- and TIMM17B-containing variants of the translocase. Interestingly, OCIAD1 assembled with the prohibitin complex to protect the TIMM17A variant from degradation by the YME1L protease. The expression of OCIAD1 was in turn regulated by the status of the TIM23 complex. We postulate that OCIAD1 together with prohibitins constitute a regulatory axis that differentially regulates variants of human TIM23.

Keywords:
biogenesis, mitochondria, OCIAD1, prohibitin, TIM23 translocase

Affiliations:
Elancheliyan P. - other affiliation
Maruszczak K. - other affiliation
Serwa R. A. - other affiliation
Stephan T. - other affiliation
Gulgec A. S. - other affiliation
Borrero-Landazabal M. - other affiliation
Ngati S. - other affiliation
Gosk A. - other affiliation
Jakobs S. - other affiliation
Wasilewski M. - other affiliation
Chacinska A. - other affiliation

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