中山大学生命科学学院,广东,广州,510275
纸质出版日期:2012,
网络出版日期:2012-11-25,
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焦诗卉, 何淼. HIV辅助受体CCR5常见小分子抑制剂抑制效果的综合评价[J]. 中山大学学报(自然科学版)(中英文), 2012,51(6).
JIAO Shihui, HE Miao. Inhibition Evaluation of Common Small Molecule Inhibitors of CCR5 for HIV[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2012,51(6).
通过系统比较CCR5常见小分子抑制剂的抑制效果,寻找CCR5的优化对接靶点,筛选最优抑制剂,为新型抑制剂的研发提供理论依据。基于Material Studio软件,我们构建了7类29种小分子抑制剂的三维结构,全面模拟了各种抑制剂与CCR5对接的效果;利用分子对接绝对自由能、相对自由能、对接姿态百分比和LibDock综合得分等参数评估小分子抑制剂的抑制效果。研究初步发现,CCR5小分子抑制剂的最优对接位点是第二个胞外环与N末端之间的site4。小分子抑制剂的抑制效果由强到弱排序依次为:抑制剂27(吡咯烷类)、抑制剂8(苯并环庚烯类)、抑制剂12(哌啶类)、抑制剂14(螺环二酮哌啶类)、抑制剂21(4-哌啶-1-丁胺类)、抑制剂5(天然小分子类)和抑制剂17(托品烷类);其研究表明,吡咯烷类抑制剂27可能成为CCR5最优抑制剂候选对象。
The study endeavors to find the optimal inhibitor and the best poses of CCR5 for HIV by comparing the inhibition of common small molecule inhibitors systematically. The results will be helpful to design new drugs of inhibitors. The 3D structures of 29 kinds of small molecule inhibitors from 7 classes were built by using Material Studio software The docking results that each inhibitor docks with CCR5 protein were obtained. Several parameters had been used to evaluate the inhibition effects of these molecules
which include absolute free energy
relative free energy
docking attitude percentage and LibDock composite score et al. And finally the study also revealed the optimal site of CCR5 which located in the second cell outer ring and the N-terminal. The inhibitions from strong to weak are sorted as following: Inhibitor 27 (pyrrolidine)
inhibitors (benzo cycloheptane vinyl)
inhibitor 12 (piperidine)
inhibitor 14 (spiro diketone piperidine)
inhibitor 21 (4-piperazine pyridine-1-the butylamine class)
5 inhibitors (natural small molecule class)
inhibitor 17 (tropicamide alkanes). Among which
inhibitor 27 (pyrrolidine) may be the candidate of optimal inhibitor of CCR5 protein.
discovery studioCCR5HIV-1小分子抑制剂
discovery studioCCR5HIV-1small molecule inhibitor
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