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计算机模拟和X-射线实验研究蛋白质机械力学 被引量:1
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作者 肖森波 陈健 Frauke Graeter 《生命科学》 CSCD 北大核心 2009年第1期21-27,共7页
近年来,研究发现在动力学反应及其模拟中,机械力主要表现为一个生理刺激元素。机械力如血管中的剪切流或肌肉组织中的伸缩力,能够紧密地控制着基因表达或组织修复等生物过程,在生物体中起着非常重要的作用。而对于这样的力控制生物... 近年来,研究发现在动力学反应及其模拟中,机械力主要表现为一个生理刺激元素。机械力如血管中的剪切流或肌肉组织中的伸缩力,能够紧密地控制着基因表达或组织修复等生物过程,在生物体中起着非常重要的作用。而对于这样的力控制生物过程的原因仍然未知。本文通过应用结构生物学、生物物理实验以及计算机模拟来展示如何研究蛋白质动力学。它主要综述了三个特定的主题:丝蛋白纤维动力学模拟、血管中蛋白质的剪切诱导过程以及在力的作用下酶的反应。 展开更多
关键词 机械 分子模拟 蛋白质纤维 剪切力 机械-生物化学
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Aurora A orchestrates entosis by regulating a dynamic MCAK-TIP150 interaction 被引量:9
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作者 PengXia JinhuaZhou +13 位作者 Xiaoyu Song BingWu XingLiu Di Li Shuyuan Zhang Zhikai Wang H uijuan Yu Tarsha Ward Jiancun Zhang Yinmei Li Xiaoning Wang YongChen Zhen Guo Xuebiao Yao 《Journal of Molecular Cell Biology》 SCIE CAS CSCD 2014年第3期240-254,共15页
Entosis, a ceU-in-ceU process, has been implicated in the formation of aneuploidy associated with an aberrant cell division control. Microtubule plus-end-tracking protein TI P150 facilitates the loading of MCAK onto t... Entosis, a ceU-in-ceU process, has been implicated in the formation of aneuploidy associated with an aberrant cell division control. Microtubule plus-end-tracking protein TI P150 facilitates the loading of MCAK onto the microtubule plus ends and orchestrates micro- tubule plus-end dynamics during cell division. Here we show that TIP150 cooperates with MCAK to govern entosis via a regulatory cir- cuitry that involves Aurora A-mediated phosphorylation of MCAK. Our biochemical analyses show that MCAK forms an intra-molecular association, which is essential for TIP150 binding. Interestingly, Aurora A-mediated phosphorylation of MCAK modulates its intra-mo- lecular association, which perturbs the MCAK-TI P150 interaction in vitro and inhibits entosis in vivo. To probe if MCAK-TIP150 inter- action regulates microtubule plasticity to affect the mechanical properties of ceUs during entosis, we used an optical trap to measure the mechanical rigidity of live MCF7 ceils. We find that the MCAK cooperates with TIP150 to promote microtubule dynamics and modulate the mechanical rigidity of the cells during entosis. Our results show that a dynamic interaction of MCAK-TI P150 orchestrated by Aurora A-mediated phosphorylation governs entosis via regulating microtubule plus-end dynamics and cell rigidity. These data reveal a previously unknown mechanism of Aurora A regulation in the control of microtubule plasticity during ceU-in-ceU pro- cesses. 展开更多
关键词 Aurora A TIP150 MCAK entosis microtubule plus-end KINESIN
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