from    
to    
search  

 


活动预告|碳中和与能源智联(CNEST)前沿讲座第1期
”行业前沿讲堂”第2期——全过程咨询新实践:建设职能杠杆体系原理深度解读
Entanglement islands and cutoff branes from path-integral optimization
【图书馆系列讲座】个人文献管理软件EndNote的功能与使用
报告题目:
活动取消!Multi-scale enhanced sampling of disordered protein conformations
 报告人:
Prof. Jianhan Chen(陈建涵)
Kansas State University
报告时间:
2016-07-08 10:00
报告地点:
化学工程系英士楼205会议室
主办单位:
化学工程系
  简介:

各位老师、同学,由于主讲人不能按时到达,本次活动临时取消。请相互转告。

给您带来不便,请谅解。

摘要:Many IDPs involved in cellular signaling and regulation appear to exist at the thermodynamic stability and instability boundary, such that the disorder ensembles are poised to respond sensitively to various cellular signals including changes in the cellular environment, binding of small and big co-factors, and post-translational modifications. There is thus a great need to determine the detailed properties of free IDPs, such that one can start to relate these properties to function and understand how the ensemble-function relationship maybe perturbed in human diseases. Here, I want to present recent progresses from my lab towards reliable atomistic simulations of disordered protein ensembles. In particular, we have developed a multi-scale enhanced sampling (MSES) technique that exploits efficient coarse-grained models to greatly accelerate the sampling of atomistic protein conformations. Development of MSES has also allowed us to re-optimize a generalized Born with molecular volume (GBMV) implicit solvent force field, which can now recapitulate the stability and structure of a wide range of helical and beta-hairpin peptides. Importantly, the new force field is largely free of the over-compaction problem suffered by many current implicit as well as explicit solvent force fields. We are very optimistic that development of these advanced sampling and implicit solvent methods has paved the way for one to start to examine the ensemble-function-disease relationship of many important IDPs at the atomistic level.

个人简历: 见附件。

JChen-shortCV.pdf

今日相关信息
Sustainablity in Publishing
 
同类别相关信息
生物和材料界面的多尺度核磁共振测量方法
单颗粒碰撞电分析化学
学堂班系列讲座:“Through the Lens:...
Electrostatically driven self-assem...
Unlocking the Potential of π-Conju...
学术活动