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Kinesins are processive motor proteins that move along microtubules in a stepwise manner, and their motion is powered by the hydrolysis of ATP. Recent experiments have investigated the coupling between the individual steps of single kinesin…

软凝聚态物质 · 物理学 2009-11-10 Anatoly B. Kolomeisky , Evgeny B. Stukalin , Alex A. Popov

We study the ensemble velocity of non-processive motor proteins, described with multiple chemical states. In particular, we discuss the velocity as a function of ATP concentration. Even a simple model which neglects the strain-dependence of…

生物物理 · 物理学 2014-10-28 Andrej Vilfan

Kinesin motors have been studied extensively both experimentally and theoretically. However, the microscopic mechanism of the processive movement of kinesin is still an open question. In this paper, we propose a hand-over-hand model for the…

生物大分子 · 定量生物学 2009-11-10 Ping Xie , Shuo-Xing Dou , Peng-Ye Wang

In this study, through phenomenological comparison of the velocity-force data of processive motor proteins, including conventional kinesin, cytoplasmic dynein and myosin V, we found that, the ratio between motor velocities of two different…

生物物理 · 物理学 2015-05-30 Yunxin Zhang

Conventional kinesin is a two-headed homodimeric motor protein, which is able to walk along microtubules processively by hydrolyzing ATP. Its neck linkers, which connect the two motor domains and can undergo a docking/undocking transition,…

生物大分子 · 定量生物学 2015-05-27 András Czövek , Gergely J Szöllősi , Imre Derényi

Dimeric molecular motors walk on polar tracks by binding and hydrolyzing one ATP per step. Despite tremendous progress, the waiting state for ATP binding in the well-studied kinesin that walks on microtubule (MT), remains controversial. One…

亚细胞过程 · 定量生物学 2022-06-08 Ryota Takaki , Mauro L. Mugnai , Yonathan Goldtzvik , D. Thirumalai

We present a quantitative analysis of recent data on the kinetics of ATP hydrolysis, which has presented a puzzle regarding the load dependence of the Michaelis constant. Within the framework of coarse grained two-state ratchet models, our…

统计力学 · 物理学 2009-10-31 Gianluca Lattanzi , Amos Maritan

In a conformational nonequilibrium steady state (cNESS), enzyme turnover is modulated by the underlying conformational dynamics. Based on a discrete kinetic network model, we use the integrated probability flux balance method to derive the…

生物物理 · 物理学 2017-05-17 D. Evan Piephoff , Jianlan Wu , Jianshu Cao

The molecular motor protein kinesin plays a key role in fundamental cellular processes such as intracellular transport, mitotic spindle formation, and cytokinesis, with important implications for neurodegenerative and cancer disease…

生物大分子 · 定量生物学 2014-11-18 B. D. Jacobson , L. J. Herskowitz , S. J. Koch , S. R. Atlas

Here we generalize our previous model of molecular motors trafficking subdiffusing cargos in viscoelastic cytosol by (i) including mechanochemical coupling between cyclic conformational fluctuations of the motor protein driven by the…

生物物理 · 物理学 2015-05-01 Igor Goychuk

Using the model for the processive movement of a dimeric kinesin we proposed before, we study the dynamics of a number of mutant homodimeric and heterodimeric kinesins that were constructed by Kaseda et al. (Kaseda, K., Higuchi, H. and…

生物大分子 · 定量生物学 2007-05-23 Ping Xie , Shuo-Xing Dou , Peng-Ye Wang

Recently individual two-headed kinesin molecules have been studied in in vitro motility assays revealing a number of their peculiar transport properties. In this paper we propose a simple and robust model for the kinesin stepping process…

统计力学 · 物理学 2009-10-31 Imre Derenyi , Tamas Vicsek

Mechanochemical coupling was studied for two different types of myosin motors in cells: myosin V, which carries cargo over long distances by as a single molecule; and myosin II, which generates a contracting force in cooperation with other…

亚细胞过程 · 定量生物学 2009-11-13 Masatoshi Nishikawa , Hiroaki Takagi , Atsuko H. Iwane , Toshio Yanagida

We study the dynamics of a tunable 2D active nematic liquid crystal composed of microtubules and kinesin motors confined to an oil-water interface. Kinesin motors continuously inject mechanical energy into the system through ATP hydrolysis,…

软凝聚态物质 · 物理学 2019-09-10 Linnea M Lemma , Stephen J Decamp , Zhihong You , Luca Giomi , Zvonimir Dogic

Despite significant fluctuation under thermal noise, biological machines in cells perform their tasks with exquisite precision. Using molecular simulation of a coarse-grained model and theoretical arguments we envisaged how kinesin, a…

生物物理 · 物理学 2015-06-03 Changbong Hyeon , José N. Onuchic

We present a model of an ATP-fueled molecular machine which push a polymer through a pore channel. The machine acts between two levels (working-waiting), and the working one remains active for a fixed time giving a constant force. The…

软凝聚态物质 · 物理学 2012-02-24 Alessandro Fiasconaro , Juan José Mazo , Fernando Falo

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…

生物物理 · 物理学 2019-03-27 Changbong Hyeon , Stefan Klumpp , José N. Onuchic

Myosin II plays a pivotal role in muscle contraction by generating force through the cooperative action of multiple motors on actin filaments. In this study, we integrate the nonlinear elasticity of the neck linker in individual myosin II…

生物物理 · 物理学 2023-06-21 Beibei Shen , Yunxin Zhang

Conventional kinesin is a homodimeric motor protein that unidirectionally transports organelles along filamentous microtubule (MT) by hydrolyzing ATP molecules. This study shows that the load modulations of ATP turnover and head diffusion…

生物物理 · 物理学 2009-07-13 Dagong Fan , Wenwei Zheng , Ruizheng Hou , Fuli Li , Zhisong Wang

Kinesin and related motor proteins utilize ATP fuel to propel themselves along the external surface of microtubules in a processive and directional fashion. We show that the observed step-like motion is possible through time varying charge…

生物大分子 · 定量生物学 2007-05-23 A. Ciudad , J. M. Sancho , G. P. Tsironis
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