神戸大学附属図書館デジタルアーカイブ
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https://hdl.handle.net/20.500.14094/90008875
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2025-08-02
16:29 集計
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90008875 (fulltext)
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1.18 MB
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メタデータID
90008875
アクセス権
open access
出版タイプ
Accepted Manuscript
タイトル
Elucidating microscopic events driven by GTP hydrolysis reaction in the Ras-GAP system with semi-reactive molecular dynamics simulations: the alternative role of a phosphate binding loop for mechanical energy storage
その他のタイトル
Elucidating Microscopic Events Driven by GTP Hydrolysis Reaction in Ras-GAP System with Semi-reactive Molecular Dynamics Simulation: Alternative Role of Phosphate Binding Loop as Mechanical Energy Storage
著者
著者ID
A2299
研究者ID
1000050583340
KUID
https://kuid-rm-web.ofc.kobe-u.ac.jp/search/detail?systemId=ca8ab037b2d2dea9520e17560c007669
著者名
Kurisaki, Ikuo
栗﨑, 以久男
クリサキ, イクオ
所属機関名
システム情報学研究科
著者ID
A0271
研究者ID
1000010379480
KUID
https://kuid-rm-web.ofc.kobe-u.ac.jp/search/detail?systemId=c07e328da483e766520e17560c007669
著者名
Tanaka, Shigenori
田中, 成典
タナカ, シゲノリ
所属機関名
システム情報学研究科
言語
English (英語)
収録物名
Physical Chemistry Chemical Physics
巻(号)
23(46)
ページ
26151-26164
出版者
Royal Society of Chemistry
刊行日
2021-12-14
公開日
2022-12-01
抄録
ATPase and GTPase have been widely found as chemical energy–mechanical work transducers, whereas the physicochemical mechanisms are not satisfactorily understood. We addressed the problem by examining John Ross’ conjecture that repulsive Coulomb interaction between ADP/GDP and inorganic phosphate (Pi) does the mechanical work upon the system. We effectively simulated the consequence of a GTP hydrolysis reaction in a complex system of Rat sarcoma (Ras) and GTPase activation protein (GAP) in the framework of classical molecular dynamics by switching force field parameters between the reactant and product systems. We then observed a ca. 5 kcal mol−1 increase of potential energy about the phosphate-binding loop (P-loop) in the Ras protein, indicating that the mechanical work generated via the GTP hydrolysis is converted into the local interaction energy and stored in the P-loop. Interestingly, this local energy storage in the P-loop depends on neither impulsive nor consecutive collisions of GDP and Pi with the P-loop. Instead, GTP–GDP conversion itself does work on the Ras system, elevating the potential energy. These observations encourage us to challenge a conjecture previously given by Ross. We assert that triphosphate nucleotide hydrolyses do mechanical work by producing emergent steric interaction accompanied by relaxation, namely, a shift of the biomolecular system to the non-equilibrium state on the reshaped potential energy landscape. Recalling the universality of the P-loop motif among GTPases and ATPases, the observations that we obtained through this study would progress the physicochemical understanding of the operating principles of GTP/ATP hydrolysis-driven biological nano-machines.
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システム情報学研究科
学術雑誌論文
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© the Owner Societies 2021
関連情報
DOI
https://doi.org/10.1039/d1cp04061h
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資源タイプ
journal article
ISSN
1463-9076
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eISSN
1463-9084
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NCID
AA11301773
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