4.8 Article

MDM2 Integrates Cellular Respiration and Apoptotic Signaling through NDUFS1 and the Mitochondrial Network

期刊

MOLECULAR CELL
卷 74, 期 3, 页码 452-+

出版社

CELL PRESS
DOI: 10.1016/j.molcel.2019.02.012

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资金

  1. NIH [R01 CA157740, R01 CA206005, R01 GM12995]
  2. JJR Foundation
  3. William A. Spivak Fund
  4. Fridolin Charitable Trust
  5. American Cancer Society Research Scholar Award
  6. Leukemia & Lymphoma Society Career Development Award
  7. Irma T. Hirschl/Monique Weill Caulier Trust Research Award
  8. March of Dimes Foundation [5FY1174, 1FY13416]
  9. Developmental Research Pilot Project Program within the Department of Oncological Sciences at the Icahn School of Medicine at Mount Sinai
  10. Tisch Cancer Institute Cancer Center Support Grant [P30 CA196521]

向作者/读者索取更多资源

Signaling diversity and subsequent complexity in higher eukaryotes is partially explained by one gene encoding a polypeptide with multiple biochemical functions in different cellular contexts. For example, mouse double minute 2 (MDM2) is functionally characterized as both an oncogene and a tumor suppressor, yet this dual classification confounds the cell biology and clinical literatures. Identified via complementary biochemical, organellar, and cellular approaches, we report that MDM2 negatively regulates NADH:ubiquinone oxidoreductase 75 kDa Fe-S protein 1 (NDUFS1), leading to decreased mitochondrial respiration, marked oxidative stress, and commitment to the mitochondrial pathway of apoptosis. MDM2 directly binds and sequesters NDUFS1, preventing its mitochondria! localization and ultimately causing complex I and supercomplex destabilization and inefficiency of oxidative phosphorylation. The MDM2 amino-terminal region is sufficient to bind NDUFS1, alter supercomplex assembly, and induce apoptosis. Finally, this pathway is independent of p53, and several mitochondrial phenotypes are observed in Drosophila and murine models expressing transgenic Mdm2.

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