Literature DB >> 33513284

Structural snapshots of the kinesin-2 OSM-3 along its nucleotide cycle: implications for the ATP hydrolysis mechanism.

Paloma F Varela1, Mélanie Chenon1, Christophe Velours1, Kristen J Verhey2, Julie Ménétrey1, Benoît Gigant1.   

Abstract

Motile kinesins are motor proteins that translocate along microtubules as they hydrolyze ATP. They share a conserved motor domain which harbors both ATPase and microtubule-binding activities. An ATP hydrolysis mechanism involving two water molecules has been proposed based on the structure of the kinesin-5 Eg5 bound to an ATP analog. Whether this mechanism is general in the kinesin superfamily remains uncertain. Here, we present structural snapshots of the motor domain of OSM-3 along its nucleotide cycle. OSM-3 belongs to the homodimeric kinesin-2 subfamily and is the Caenorhabditis elegans homologue of human KIF17. OSM-3 bound to ADP or devoid of a nucleotide shows features of ADP-kinesins with a docked neck linker. When bound to an ATP analog, OSM-3 adopts a conformation similar to those of several ATP-like kinesins, either isolated or bound to tubulin. Moreover, the OSM-3 nucleotide-binding site is virtually identical to that of ATP-like Eg5, demonstrating a shared ATPase mechanism. Therefore, our data extend to kinesin-2 the two-water ATP hydrolysis mechanism and further suggest that it is universal within the kinesin superfamily. PROTEIN DATABASE ENTRIES: 7A3Z, 7A40, 7A5E.
© 2021 The Authors. FEBS Open Bio published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies.

Entities:  

Keywords:  ATP hydrolysis mechanism; X-ray crystallography; kinesin; microtubule; motor protein

Mesh:

Substances:

Year:  2021        PMID: 33513284      PMCID: PMC7931232          DOI: 10.1002/2211-5463.13101

Source DB:  PubMed          Journal:  FEBS Open Bio        ISSN: 2211-5463            Impact factor:   2.693


  51 in total

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9.  Crystal structure of Zen4 in the apo state reveals a missing conformation of kinesin.

Authors:  Ruifang Guan; Lei Zhang; Qian Peter Su; Keith J Mickolajczyk; Geng-Yuan Chen; William O Hancock; Yujie Sun; Yongfang Zhao; Zhucheng Chen
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