4.8 Article

A VDAC1-mediated NEET protein chain transfers [2Fe-2S] clusters between the mitochondria and the cytosol and impacts mitochondrial dynamics

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2121491119

Keywords

mitochondrial inner NEET protein (MiNT); CISD3; VDAC1; mitoNEET; [2Fe-2S] cluster

Funding

  1. Annual Golda Meir Fellowship
  2. Hebrew University Rector for the Emergency Scholarship
  3. STIMULATE project from the European Union's Horizon 2020 research and innovation program [765048]
  4. NSF-Binational Science Foundation (BSF) [NSF-MCB 1613462]
  5. BSF Grant [2015831, GM111364]
  6. NSF [PHY-2019745, CHE-1614101, MCB-1943442]
  7. Welch Foundation [C-1792]
  8. NIH [R35GM133631]

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The NEET protein family plays a crucial role in regulating mitochondrial labile iron and reactive oxygen species homeostasis. MiNT interacts with VDAC1 to transfer [2Fe-2S] clusters from mitochondria to the cytosol, impacting mitochondrial structure and function in breast cancer cells.
Mitochondrial inner NEET (MiNT) and the outer mitochondrial membrane (OMM) mitoNEET (mNT) proteins belong to the NEET protein family. This family plays a key role in mitochondrial labile iron and reactive oxygen species (ROS) homeostasis. NEET proteins contain labile [2Fe-2S] clusters which can be transferred to apo-acceptor proteins. In eukaryotes, the biogenesis of [2Fe-2S] clusters occurs within the mitochondria by the iron-sulfur cluster (ISC) system; the clusters are then transferred to [2Fe-2S] proteins within the mitochondria or exported to cytosolic proteins and the cytosolic iron-sulfur cluster assembly (CIA) system. The last step of export of the [2Fe-2S] is not yet fully characterized. Here we show that MiNT interacts with voltage-dependent anion channel 1 (VDAC1), a major OMM protein that connects the intermembrane space with the cytosol and participates in regulating the levels of different ions including mitochondrial labile iron (mLI). We further show that VDAC1 is mediating the interaction between MiNT and mNT, in which MiNT transfers its [2Fe-2S] clusters from inside the mitochondria to mNT that is facing the cytosol. This MiNT-VDAC1-mNT interaction is shown both experimentally and by computational calculations. Additionally, we showthatmodifyingMiNT expression in breast cancer cells affects the dynamics of mitochondrial structure and morphology, mitochondrial function, and breast cancer tumor growth. Our findings reveal a pathway for the transfer of [2Fe-2S] clusters, which are assembled inside the mitochondria, to the cytosol.

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