AAA+ protease-adaptor structures reveal altered conformations and ring specialization
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....
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Veröffentlicht in: | Nature structural & molecular biology 2022-11, Vol.29 (11), p.1068-1079 |
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Sprache: | eng |
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Zusammenfassung: | 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.
Cryo-EM structures of the AAA+ ClpAP•ClpS protease-adaptor complex show degron-like ClpS binding, coordinated by pore-1 loops from either the D1 or the D1 and D2 rings of ClpA. D1-pore-2-loop activity is critical for ClpS-assisted degradation. |
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ISSN: | 1545-9993 1545-9985 |
DOI: | 10.1038/s41594-022-00850-3 |