Title of article
Three phase model of the processive motor protein kinesin Original Research Article
Author/Authors
Yunxin Zhang، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
4
From page
19
To page
22
Abstract
Kinesin is a stepping motor that successively produces forward and backward 8-nm steps along microtubules. Under physiological conditions, the steps powering kinesinʹs motility are biased in one direction and drive various biological motile processes. So far, the physical mechanism underlying the unidirectional bias of the kinesin is not fully understood. Recently, Martin Bier have provided a stepper model [Martin Bier, 2003, Processive motor protein as an overdamped Brownian stepper, Phys. Rev. Lett. 91, 148104], in which the stepping cycle of kinesin includes two distinguished phases: (i) a power stroke phase and (ii) a ratcheted diffusion phase which is characterized as a “random diffusional search”. At saturating ATP level, this model can fit the experimental results accurately. In this paper, weʹll provide a modified Brownian stepper model, in which the dependence of ATP concentration is considered. In our model, the stepping cycle of kinesin is distinguished into three phases: an ATP-binding phase, a power stroke phase and a ratcheted diffusion phase. This modified model can reconstruct most of the experimental results accurately.
Keywords
Molecular motor , Stepper model
Journal title
Biophysical Chemistry
Serial Year
2008
Journal title
Biophysical Chemistry
Record number
1120054
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