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DESCRIPTION (provided by applicant): The goal of this proposal to align the applicant's previous research expertise in computational modeling with cancer research, and help the applicant to acquire additional skills needed to direct an independent biomedical research laboratory utilizing a multidisciplinary approach to study cancer pathogenesis and develop cancer chemotherapy. The applicant will be mentored by Dr. Jay M. McDonald, an expert in the study of the role of calmodulin (CaM) as a signal transducer in many diseases including cancer pathogenesis. The training plan includes the proper combination of didactic coursework, experimental laboratory training, seminars and journal clubs and regular meetings with the mentor and Advisory Committee. The mentored training is essential for the applicant to accomplish the proposed research in cancer pathogenesis with combined computational and biological experimental approaches, and prepare the candidate to be competitive for future independent NIH funding applications in biomedicine. Cholangiocarcinoma is a fatal cancer and its rates have been rising worldwide over the past several decades. Regulation of Fas-mediated apoptosis is a promising approach to prevent cancer progression. The goal of this application is to understand Fas-mediated signaling pathways in the pathogenesis of cholangiocarcinoma by focusing on protein interactions underlying Fas-mediated death inducing signaling complex (DISC) formation from both structural and functional point of views. The hypothesis is that the direct interaction between CaM and Fas modulates apoptosis by regulating the formation of the DISC and represents a potential site for cancer chemotherapeutics. The hypothesis will be tested by pursuing two specific aims. Each aim will employ both biophysical simulations and biochemical experiments. Specific Aim 1. Determine the role of CaM/Fas binding in regulating Fas-mediated signaling pathways in cholangiocarcinoma cells. Specific Aim 2. Determine the molecular mechanisms of the effect of CaM antagonists on Fas- mediated DISC formation in cholangiocarcinoma cells.
期刊论文(8)
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Conformation and free energy analyses of the complex of calcium-bound calmodulin and the Fas death domain.
钙结合钙调蛋白和 Fas 死亡结构域复合物的构象和自由能分析。
DOI: 10.1529/biophysj.108.130542
发表时间: 2008
期刊: Biophysical journal
影响因子: 3.4
作者: [Suever,JonathanD, Chen,Yabing, McDonald,JayM, Song,Yuhua]
通讯作者: Song,Yuhua
Structural insight for the roles of fas death domain binding to FADD and oligomerization degree of the Fas-FADD complex in the death-inducing signaling complex formation: a computational study.
fas 死亡结构域与 FADD 结合的结构洞察以及 Fas-FADD 复合物寡聚化程度在死亡诱导信号复合物形成中的作用:一项计算研究。
DOI: 10.1002/prot.24193
发表时间: 2013
期刊: Proteins
影响因子: 2.9
作者: [Yan,Qi, McDonald,JayM, Zhou,Tong, Song,Yuhua]
通讯作者: Song,Yuhua
Trifluoperazine regulation of calmodulin binding to Fas: a computational study.
三氟拉嗪对钙调蛋白与 Fas 结合的调节:一项计算研究。
DOI: 10.1002/prot.23081
发表时间: 2011
期刊: Proteins
影响因子: 2.9
作者: [Pan,Di, Yan,Qi, Chen,Yabing, McDonald,JayM, Song,Yuhua]
通讯作者: Song,Yuhua
DOI: 10.1002/jcb.25882
发表时间: 2017-08
期刊: Journal of cellular biochemistry
影响因子: 4
作者: [Fancy RM, Kim H, Zhou T, Zinn KR, Buchsbaum DJ, Song Y]
通讯作者: Song Y
6
    Drugs repositioning to target TREM2 in Alzheimer disease
    TREM2-endogenous ligand interactions in Alzheimer disease
    TREM2-endogenous ligand interactions in Alzheimer disease
    TREM2-endogenous ligand interactions in Alzheimer disease
    海外基金