国家自然科学基金(39970184, 79970116)、霍英东青年教师奖励基金和江苏省自然科学基金(BJ97041)资助项目.
This work was supported by a grant by National Natural Sciences Foundation of China (39970184, 79970116), Young Teacher Award from Huo Ying-Dong Foundation and Natural Science Foundation of Jiangsu Province(BJ97041).
通过将凝血酶抑制剂水蛭素的C端20肽片段嫁接到血小板结合蛋白AnnexinⅤ上,可以期望获得既具有抗凝血活性,同时又具有导向性的新型工程蛋白质分子.利用计算机辅助分子设计手段模拟了该融合蛋白的分子结构,并对该融合蛋白对凝血酶的抑制作用进行了分子动力学模拟,得到了支持上述想法的结果.
Hirudin is one of the most potent anti-coagulant protein ever found, and its C-terminus is a key domain for inhibiting thrombin. In order to enhance its specificity, a novel anti-coagulant protein was constructed via fusing the C-terminus of hirudin to AnnexinⅤ, which was expected to sustain both anti-coagulant activity and phorspholipid affinity. The structure of the designed protein was predicted with both molecular mechanics and dynamics. Molecular dynamics was adopted to simulate the docking interaction between the fusion protein and thrombin. The results showed the inhibitory activity of the fusion protein to thrombin.
范垚,王进,杨杉,杨翔,张丽娜,华子春,朱德煦.一种水蛭素类融合蛋白与凝血酶作用的动力学模拟[J].生物化学与生物物理进展,2001,28(1):86-89
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