4.8 Article

An in vitro system to silence mitochondrial gene expression

期刊

CELL
卷 184, 期 23, 页码 5824-+

出版社

CELL PRESS
DOI: 10.1016/j.cell.2021.09.033

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资金

  1. Max Planck Society
  2. PhD program Molecular Biology - International Max Planck Research School
  3. Gottingen Graduate School for Neurosciences and Molecular Biosciences (GGNB
  4. DFG) [GSC 226/1]
  5. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) under Germany's Excellence Strategy [EXC 2067/1-390729940: SFB1190, P08/14, SFB860, SFB1286]
  6. DFG Emmy Noether grant [RI 2715/1-1]

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The study introduces a novel in vitro system to silence translation in mitochondria, shedding light on mechanisms of mitochondrial gene expression including ribosome/mRNA engagement and the recruitment of assembly factors by nascent chains. The research also reveals an unexpected role of the cytosolic oncofetal IGF2BP1 in mitochondrial translation.
The human mitochondrial genome encodes thirteen core subunits of the oxidative phosphorylation system, and defects in mitochondrial gene expression lead to severe neuromuscular disorders. However, the mechanisms of mitochondrial gene expression remain poorly understood due to a lack of experimental approaches to analyze these processes. Here, we present an in vitro system to silence translation in purified mitochondria. In vitro import of chemically synthesized precursor-morpholino hybrids allows us to target translation of individual mitochondrial mRNAs. By applying this approach, we conclude that the bicistronic, overlapping ATP8/ATP6 transcript is translated through a single ribosome/mRNA engagement. We show that recruitment of COX1 assembly factors to translating ribosomes depends on nascent chain formation. By defining mRNA-specific interactomes for COX1 and COX2, we reveal an unexpected function of the cytosolic oncofetal IGF2BP1, an RNA-binding protein, in mitochondrial translation. Our data provide insight into mitochondrial translation and innovative strategies to investigate mitochondrial gene expression.

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