Structural insights into ATP hydrolysis by the MoxR ATPase RavA and the LdcI-RavA cage-like complex

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作者
Matthew Jessop
Benoit Arragain
Roger Miras
Angélique Fraudeau
Karine Huard
Maria Bacia-Verloop
Patrice Catty
Jan Felix
Hélène Malet
Irina Gutsche
机构
[1] Institut de Biologie Structurale,
[2] Univ. Grenoble Alpes,undefined
[3] CEA,undefined
[4] CNRS,undefined
[5] IBS,undefined
[6] Laboratoire de Chimie et Biologie des Métaux,undefined
[7] Univ. Grenoble Alpes,undefined
[8] CEA,undefined
[9] CNRS,undefined
[10] DRF,undefined
[11] IRIG,undefined
[12] UMR 5249,undefined
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The hexameric MoxR AAA+ ATPase RavA and the decameric lysine decarboxylase LdcI form a 3.3 MDa cage, proposed to assist assembly of specific respiratory complexes in E. coli. Here, we show that inside the LdcI-RavA cage, RavA hexamers adopt an asymmetric spiral conformation in which the nucleotide-free seam is constrained to two opposite orientations. Cryo-EM reconstructions of free RavA reveal two co-existing structural states: an asymmetric spiral, and a flat C2-symmetric closed ring characterised by two nucleotide-free seams. The closed ring RavA state bears close structural similarity to the pseudo two-fold symmetric crystal structure of the AAA+ unfoldase ClpX, suggesting a common ATPase mechanism. Based on these structures, and in light of the current knowledge regarding AAA+ ATPases, we propose different scenarios for the ATP hydrolysis cycle of free RavA and the LdcI-RavA cage-like complex, and extend the comparison to other AAA+ ATPases of clade 7.
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