7uiy Citations

AAA+ protease-adaptor structures reveal altered conformations and ring specialization.

OpenAccess logo Nat Struct Mol Biol (2022)
Related entries: 7uiv, 7uiw, 7uix, 7uiz, 7uj0

Cited: 3 times
EuropePMC logo PMID: 36329286

Abstract

ClpAP, a two-ring AAA+ protease, degrades N-end-rule proteins bound by the ClpS adaptor. Here we present high-resolution cryo-EM structures of Escherichia coli ClpAPS complexes, showing how ClpA pore loops interact with the ClpS N-terminal extension (NTE), which is normally intrinsically disordered. In two classes, the NTE is bound by a spiral of pore-1 and pore-2 loops in a manner similar to substrate-polypeptide binding by many AAA+ unfoldases. Kinetic studies reveal that pore-2 loops of the ClpA D1 ring catalyze the protein remodeling required for substrate delivery by ClpS. In a third class, D2 pore-1 loops are rotated, tucked away from the channel and do not bind the NTE, demonstrating asymmetry in engagement by the D1 and D2 rings. These studies show additional structures and functions for key AAA+ elements. Pore-loop tucking may be used broadly by AAA+ unfoldases, for example, during enzyme pausing/unloading.

Articles - 7uiy mentioned but not cited (1)

  1. AAA+ protease-adaptor structures reveal altered conformations and ring specialization. Kim S, Fei X, Sauer RT, Baker TA. Nat Struct Mol Biol 29 1068-1079 (2022)


Articles citing this publication (2)

  1. Bioinformatic identification of ClpI, a distinct class of Clp unfoldases in Actinomycetota. Jiang J, Schmitz KR. Front Microbiol 14 1161764 (2023)
  2. Structural insights into the Clp protein degradation machinery. Xu X, Wang Y, Huang W, Li D, Deng Z, Long F. mBio 15 e0003124 (2024)


Related citations provided by authors (1)

  1. ClpAP AAA+ Protease Adaptor Structures Reveal Pore-Loop Specialization. Kim S, Fei X, Sauer RT, Baker TA To be published -