[HTML][HTML] Atomic structure of human TOM core complex

W Wang, X Chen, L Zhang, J Yi, Q Ma, J Yin, W Zhuo… - Cell discovery, 2020 - nature.com
W Wang, X Chen, L Zhang, J Yi, Q Ma, J Yin, W Zhuo, J Gu, M Yang
Cell discovery, 2020nature.com
The translocase of the outer mitochondrial membrane (TOM) complex is the main entry gate
for mitochondrial precursor proteins synthesized on cytosolic ribosomes. Here we report the
single-particle cryo-electron microscopy (cryo-EM) structure of the dimeric human TOM core
complex (TOM-CC). Two Tom40 β-barrel proteins, connected by two Tom22 receptor
subunits and one phospholipid, form the protein-conducting channels. The small Tom
proteins Tom5, Tom6, and Tom7 surround the channel and have notable configurations. The …
Abstract
The translocase of the outer mitochondrial membrane (TOM) complex is the main entry gate for mitochondrial precursor proteins synthesized on cytosolic ribosomes. Here we report the single-particle cryo-electron microscopy (cryo-EM) structure of the dimeric human TOM core complex (TOM-CC). Two Tom40 β-barrel proteins, connected by two Tom22 receptor subunits and one phospholipid, form the protein-conducting channels. The small Tom proteins Tom5, Tom6, and Tom7 surround the channel and have notable configurations. The distinct electrostatic features of the complex, including the pronounced negative interior and the positive regions at the periphery and center of the dimer on the intermembrane space (IMS) side, provide insight into the preprotein translocation mechanism. Further, two dimeric TOM complexes may associate to form tetramer in the shape of a parallelogram, offering a potential explanation into the unusual structural features of Tom subunits and a new perspective of viewing the import of mitochondrial proteins.
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