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Structure, mechanism, and regulation of mitochondrial DNA transcription initiation

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 295, 期 52, 页码 18406-18425

出版社

ELSEVIER
DOI: 10.1074/jbc.REV120.011202

关键词

mitochondria; transcription; RNA polymerase; structure-function; transcription initiation factors; transcription regulation; enzyme mechanism; mitochondrial DNA (mtDNA); DNA transcription; enzyme structure; human mitochondrial RNA polymerase; mitochondrial DNA transcription; mitochondrial gene regulation; yeast mitochondrial RNA polymerase

资金

  1. National Institutes of Health [R35 GM118086]
  2. American Heart Association [16PRE30400001]
  3. University and Louis Bevier Dissertation Completion Fellowship from Rutgers University
  4. National Science Foundation [1814845]
  5. KU Leuven start-up grant
  6. Div Of Molecular and Cellular Bioscience
  7. Direct For Biological Sciences [1814845] Funding Source: National Science Foundation

向作者/读者索取更多资源

Mitochondria are specialized compartments that produce requisite ATP to fuel cellular functions and serve as centers of metabolite processing, cellular signaling, and apoptosis. To accomplish these roles, mitochondria rely on the genetic information in their small genome (mitochondrial DNA) and the nucleus. A growing appreciation for mitochondria's role in a myriad of human diseases, including inherited genetic disorders, degenerative diseases, inflammation, and cancer, has fueled the study of biochemical mechanisms that control mitochondrial function. The mitochondrial transcriptional machinery is different from nuclear machinery. The in vitro re-constituted transcriptional complexes of Saccharomyces cerevisiae (yeast) and humans, aided with high-resolution structures and biochemical characterizations, have provided a deeper understanding of the mechanism and regulation of mitochondrial DNA transcription. In this review, we will discuss recent advances in the structure and mechanism of mitochondrial transcription initiation. We will follow up with recent discoveries and formative findings regarding the regulatory events that control mitochondrial DNA transcription, focusing on those involved in cross-talk between the mitochondria and nucleus.

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