國家衛生研究院 NHRI:Item 3990099045/6695
English  |  正體中文  |  简体中文  |  全文笔数/总笔数 : 12145/12927 (94%)
造访人次 : 914801      在线人数 : 1378
RC Version 6.0 © Powered By DSPACE, MIT. Enhanced by NTU Library IR team.
搜寻范围 查询小技巧:
  • 您可在西文检索词汇前后加上"双引号",以获取较精准的检索结果
  • 若欲以作者姓名搜寻,建议至进阶搜寻限定作者字段,可获得较完整数据
  • 进阶搜寻
    主页登入上传说明关于NHRI管理 到手机版


    jsp.display-item.identifier=請使用永久網址來引用或連結此文件: http://ir.nhri.org.tw/handle/3990099045/6695


    题名: Energy landscape evolution of single-molecule protein guided by conformational fluctuation
    作者: Lin, CY;Huang, JY;Lo, LW
    贡献者: Division of Medical Engineering Research
    摘要: Recent molecular dynamics simulations and experimental observations have shown that the dynamics of single-molecule protein can be described with hopping among energy basins caused by backbone motions and side-chain related processes. We formalize the dynamic evolution by combining a stochastic approach with a Lindblad equation. In our model, the open quantum system is comprised of the active center and an environment relating to the protein matrix. The effects of the protein matrix are separated into two categories: fast fluctuations with frequencies higher than the dynamics of the active center, and slow modulations that allow the active center to respond adiabatically. We describe the response of the active center to the fast environmental fluctuations with a memory kernel. The active center responds to the slow modulations with a dynamical evolution on an energy landscape, which can be properly described by a series of stochastic transition matrices. We applied this method to analyze the photon emission from photoactivated fluorescent protein KFP1 in viewing that the light emission behavior of KFP1 is highly sensitive to the hydrogen bonding between its chromophores and the neighboring amino acid groups. We found the conformation fluctuation of KFP1 can vary the hydrogen bonding, thus encodes the energy-landscape evolution of the chromophore into the photon emission traces. By dynamically adjusting the trapping strength and the number of traps locating between two basins on the energy landscape, the conformation fluctuation can vary the photon emission behavior of KFP1. The distribution of the trapping strength exhibits two peaks with one near the thermal energy and the other higher than the thermal energy by a factor of 1.8. Conformational changes of AK1 undergo mutual adjustment process responded to thermal-driven modulation.
    日期: 2012-01
    關聯: Biophysical Journal. 2012 Jan;102(3, Suppl 1):595a.
    Link to: http://dx.doi.org/10.1016/j.bpj.2011.11.3242
    JIF/Ranking 2023: http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=NHRI&SrcApp=NHRI_IR&KeyISSN=0006-3495&DestApp=IC2JCR
    Cited Times(WOS): https://www.webofscience.com/wos/woscc/full-record/WOS:000321561204189
    显示于类别:[羅履維] 會議論文/會議摘要

    文件中的档案:

    档案 描述 大小格式浏览次数
    SDO2012082217.pdf31KbAdobe PDF530检视/开启


    在NHRI中所有的数据项都受到原著作权保护.

    TAIR相关文章

    DSpace Software Copyright © 2002-2004  MIT &  Hewlett-Packard  /   Enhanced by   NTU Library IR team Copyright ©   - 回馈