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Mitochondria adapt to different energetic demands reshaping their proteome. Mitochondrial proteases are emerging as key regulators of these adaptive processes. Here, we use a multi-proteomic approach to demonstrate regulation of the m-AAA protease AFG3L2 by the mitochondrial proton gradient, couplin...
ORGANISM(S): Homo sapiens (Human) 
2022-07-26 | PXD033084 | Pride
Mitochondria adapt to different energetic demands reshaping their proteome. Mitochondrial proteases are emerging as key regulators of these adaptive processes. Here, we use a multi-proteomic approach to demonstrate regulation of the m-AAA protease AFG3L2 by the mitochondrial proton gradient, couplin...
ORGANISM(S): Homo sapiens (Human) 
2022-07-26 | PXD030095 | Pride
This project aims to identify differentially expressed proteins between the Ctrl+PA group and the OE-TMBIM5+PA group using proteomic analysis. Cells were lysed with RIPA buffer containing protease inhibitors, followed by ultrasonication and centrifugation to collect the supernatant. Proteins were di...
ORGANISM(S): Mus Musculus 
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