4.5 Article

Defining the architecture of the human TIM22 complex by chemical crosslinking

期刊

FEBS LETTERS
卷 595, 期 2, 页码 157-168

出版社

WILEY
DOI: 10.1002/1873-3468.13978

关键词

carrier translocase; crosslinking‐ mass spectrometry; mitochondria; protein translocation; TIM22

资金

  1. Deutsche Forschungsgemeinschaft [SFB1190, SFB860, EXC 2067/1-390729940]
  2. Max Planck Society

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In this study, a crosslinking-mass spectrometry approach was used to determine the molecular arrangement of subunits of the human TIM22 complex, revealing unexpected features and opening up new avenues for a deeper investigation into the steps required for TIM22-mediated translocation in humans.
The majority of mitochondrial proteins are nuclear encoded and imported into mitochondria as precursor proteins via dedicated translocases. The translocase of the inner membrane 22 (TIM22) is a multisubunit molecular machine specialized for the translocation of hydrophobic, multi-transmembrane-spanning proteins with internal targeting signals into the inner mitochondrial membrane. Here, we undertook a crosslinking-mass spectrometry (XL-MS) approach to determine the molecular arrangement of subunits of the human TIM22 complex. Crosslinking of the isolated TIM22 complex using the BS3 crosslinker resulted in the broad generation of crosslinks across the majority of TIM22 components, including the small TIM chaperone complex. The crosslinking data uncovered several unexpected features, opening new avenues for a deeper investigation into the steps required for TIM22-mediated translocation in humans.

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