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Kinesin's backsteps under mechanical load

Authors
Hyeon, ChangbongKlumpp, StefanOnuchic, Jose N.
Issue Date
2009
Publisher
ROYAL SOC CHEMISTRY
Citation
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, v.11, no.24, pp 4899 - 4910
Pages
12
Journal Title
PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume
11
Number
24
Start Page
4899
End Page
4910
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/65317
DOI
10.1039/b903536b
ISSN
1463-9076
1463-9084
Abstract
Kinesins move processively toward the plus end of microtubules by hydrolyzing ATP for each step. From an enzymatic perspective, the mechanism of mechanical motion coupled to the nucleotide chemistry is often well explained using a single-loop cyclic reaction. However, several difficulties arise in interpreting kinesin's backstepping within this framework, especially when external forces oppose the motion of kinesin. We review evidence, such as an ATP-independent stall force and a slower cycle time for backsteps, that has emerged to challenge the idea that kinesin backstepping is due to ATP synthesis, i.e., the reverse cycle of kinesin's forward-stepping chemomechanics. Supplementing the conventional single-loop chemomechanics with routes for ATP-hydrolyzing backward steps and nucleotide-free steps, especially under load, gives a better physical interpretation of the experimental data on backsteps.
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