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Identification of tail binding effect of kinesin-1 using an elastic network model

Authors
Kim, Jae InChang, Hyun JoonNa, Sungsoo
Issue Date
10월-2015
Publisher
SPRINGER HEIDELBERG
Keywords
Kinesin; Autoinhibition; Elastic network model; Normal mode analysis
Citation
BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, v.14, no.5, pp.1107 - 1117
Indexed
SCIE
SCOPUS
Journal Title
BIOMECHANICS AND MODELING IN MECHANOBIOLOGY
Volume
14
Number
5
Start Page
1107
End Page
1117
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/92400
DOI
10.1007/s10237-015-0657-1
ISSN
1617-7959
Abstract
Kinesin is a motor protein that delivers cargo inside a cell. Kinesin has many different families, but they perform basically same function and have same motions. The walking motion of kinesin enables the cargo delivery inside the cell. Autoinhibition of kinesin is important because it explains how function of kinesin inside a cell is stopped. Former researches showed that tail binding is related to autoinhibition of kinesin. In this work, we performed normal mode analysis with elastic network model using different conformation of kinesin to determine the effect of tail binding by considering four models such as functional form, autoinhibited form, autoinhibited form without tail, and autoinhibited form with carbon structure. Our calculation of the thermal fluctuation and cross-correlation shows the change of tail-binding region in structural motion. Also strain energy of kinesin showed that elimination of tail binding effect leads the structure to have energetically similar behavior with the functional form.
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공과대학 (기계공학부)
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