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切应力对蛋白质构象的影响:作用于生化系统的物理力:以 von Willebrand 因子为例。

The effect of shear stress on protein conformation: Physical forces operating on biochemical systems: The case of von Willebrand factor.

机构信息

Institute of Biochemistry and Clinical Biochemistry, Catholic University School of Medicine, Rome, Italy.

出版信息

Biophys Chem. 2010 Dec;153(1):1-8. doi: 10.1016/j.bpc.2010.07.002. Epub 2010 Aug 11.

Abstract

Macromolecules and cells exposed to blood flow in the circulatory tree experience hydrodynamic forces that affect their structure and function. After introducing the general theory of the effects of shear forces on protein conformation, selected examples are presented in this review for biological macromolecules sensitive to shear stress. In particular, the biochemical effects of shear stress in controlling the von Willebrand Factor (VWF) conformation are extensively described. This protein, together with blood platelets, is the main actor of the early steps of primary haemostasis. Under the effect of shear forces >30 dyn/cm², VWF unfolding occurs and the protein exhibits an extended chain conformation oriented in the general direction of the shear stress field. The stretched VWF conformation favors also a process of self aggregation, responsible for the formation of a spider web network, particularly efficient in the trapping process of flowing platelets. Thus, the effect of shear stress on conformational changes in VWF shows a close structure-function relationship in VWF for platelet adhesion and thrombus formation in arterial circulation, where high shear stress is present. The investigation of biophysical effects of shear forces on VWF conformation contributes to unraveling the molecular interaction mechanisms involved in arterial thrombosis.

摘要

在循环树中的血液流动中暴露的大分子和细胞会受到影响其结构和功能的流体动力。在介绍了剪切力对蛋白质构象影响的一般理论之后,本综述介绍了对剪切力敏感的生物大分子的一些例子。特别是,剪切应力在控制血管性血友病因子(VWF)构象方面的生化作用得到了广泛的描述。这种蛋白质与血小板一起,是初级止血的早期步骤的主要参与者。在剪切力>30 dyn/cm²的作用下,VWF 展开,蛋白质呈现出沿剪切应力场大致方向取向的伸展链构象。伸展的 VWF 构象也有利于自身聚集过程,负责形成蜘蛛网状网络,特别是在流动血小板的捕获过程中非常有效。因此,剪切应力对 VWF 构象变化的影响在动脉循环中 VWF 对血小板黏附和血栓形成的结构-功能关系中显示出密切的相关性,因为在动脉循环中存在高剪切力。对剪切力对 VWF 构象的生物物理影响的研究有助于揭示涉及动脉血栓形成的分子相互作用机制。

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