7ngq Citations

Catalytic cycling of human mitochondrial Lon protease.

Abstract

The mitochondrial Lon protease (LonP1) regulates mitochondrial health by removing redundant proteins from the mitochondrial matrix. We determined LonP1 in eight nucleotide-dependent conformational states by cryoelectron microscopy (cryo-EM). The flexible assembly of N-terminal domains had 3-fold symmetry, and its orientation depended on the conformational state. We show that a conserved structural motif around T803 with a high similarity to the trypsin catalytic triad is essential for proteolysis. We show that LonP1 is not regulated by redox potential, despite the presence of two conserved cysteines at disulfide-bonding distance in its unfoldase core. Our data indicate how sequential ATP hydrolysis controls substrate protein translocation in a 6-fold binding change mechanism. Substrate protein translocation, rather than ATP hydrolysis, is a rate-limiting step, suggesting that LonP1 is a Brownian ratchet with ATP hydrolysis preventing translocation reversal. 3-fold rocking motions of the flexible N-domain assembly may assist thermal unfolding of the substrate protein.

Reviews - 7ngq mentioned but not cited (1)

  1. Structure and the Mode of Activity of Lon Proteases from Diverse Organisms. Wlodawer A, Sekula B, Gustchina A, Rotanova TV. J Mol Biol 434 167504 (2022)

Articles - 7ngq mentioned but not cited (1)

  1. Inhibition of mitochondrial LonP1 protease by allosteric blockade of ATP binding and hydrolysis via CDDO and its derivatives. Lee J, Pandey AK, Venkatesh S, Thilagavathi J, Honda T, Singh K, Suzuki CK. J Biol Chem 298 101719 (2022)


Reviews citing this publication (1)

  1. Mitochondrial quality control in the brain: The physiological and pathological roles. Shen X, Sun P, Zhang H, Yang H. Front Neurosci 16 1075141 (2022)

Articles citing this publication (2)

  1. A 5+1 assemble-to-activate mechanism of the Lon proteolytic machine. Li S, Hsieh KY, Kuo CI, Lin TC, Lee SH, Chen YR, Wang CH, Ho MR, Ting SY, Zhang K, Chang CI. Nat Commun 14 7340 (2023)
  2. Deciphering the mechanism and function of Hsp100 unfoldases from protein structure. Lee G, Kim RS, Lee SB, Lee S, Tsai FTF. Biochem Soc Trans 50 1725-1736 (2022)