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钙在蛋白酶ADAMTS13调节血管性血友病因子细胞内和细胞外裂解中的作用。

Role of calcium in regulating the intra- and extracellular cleavage of von Willebrand factor by the protease ADAMTS13.

作者信息

Gogia Shobhit, Kelkar Anju, Zhang Changjie, Dayananda Kannayakanahalli M, Neelamegham Sriram

机构信息

Department of Chemical and Biological Engineering, Medicine and Clinical & Translational Research Center, University at Buffalo, State University of New York, Buffalo, NY.

出版信息

Blood Adv. 2017 Oct 20;1(23):2063-2074. doi: 10.1182/bloodadvances.2017009027. eCollection 2017 Oct 24.

Abstract

von Willebrand factor (VWF) and the metalloprotease a disintegrin and metalloprotease with thrombospondin type 1 motif 13 (ADAMTS13) are present both within endothelial cells (ECs) and in peripheral blood. Calcium concentrations are lower in intracellular compartments (80-400 μM) compared with the extracellular milieu (∼1.25 mM). Because low calcium favors VWF A2-domain proteolysis by ADAMTS13, the dependence of proteolysis rates on calcium was assayed both within ECs and in blood. Confocal microscopy studies demonstrate partial perinuclear colocalization of VWF with ADAMTS13 in human umbilical vein ECs (HUVECs). Consequently, low levels (5%-10%) of VWF cleavage products were detected in HUVEC lysates and also culture-supernatant following EC stimulation. This proteolysis occurred before disulfide bond formation. Compared with wild-type VWF A2-domain, calcium-binding mutants including the common von Willebrand disease (VWD) type 2A R1597W mutant were expressed in an open conformation in ECs and were highly susceptible to intracellular proteolysis. Fluorescence resonance energy transfer measurements demonstrate strong calcium-dependent VWF-A2 conformation changes at concentrations <500 μM, with unfolding rates being fourfold higher for monomeric VWF A2-domain compared with multimeric, full-length VWF. Under shear, physiological levels of ADAMTS13 did not cleave VWF strings on HUVECs, unless platelets were attached to stretch these strings under flow. Further, VWF-platelet string cleavage under shear proceeded with equal efficiency in the absence and presence of calcium at shear stress ≥1 dyn/cm. Overall, low calcium levels may promote intracellular VWF proteolysis particularly during VWD type 2A disease. Calcium has a negligible effect on VWF-platelet string proteolysis under physiologically relevant fluid shear.

摘要

血管性血友病因子(VWF)和金属蛋白酶——含血小板反应蛋白基序的解聚素样金属蛋白酶13(ADAMTS13)既存在于内皮细胞(ECs)中,也存在于外周血中。与细胞外环境(约1.25 mM)相比,细胞内区室中的钙浓度较低(80 - 400 μM)。由于低钙有利于ADAMTS13对VWF A2结构域的蛋白水解,因此在ECs内和血液中都检测了蛋白水解速率对钙的依赖性。共聚焦显微镜研究表明,在人脐静脉内皮细胞(HUVECs)中,VWF与ADAMTS13部分在核周共定位。因此,在HUVEC裂解物以及EC刺激后的培养上清液中检测到了低水平(5% - 10%)的VWF裂解产物。这种蛋白水解发生在二硫键形成之前。与野生型VWF A2结构域相比,包括常见的2A型血管性血友病(VWD)R1597W突变体在内的钙结合突变体在ECs中以开放构象表达,并且对细胞内蛋白水解高度敏感。荧光共振能量转移测量表明,在浓度<500 μM时,VWF - A2结构发生强烈的钙依赖性构象变化,单体VWF A2结构域的解折叠速率比多聚体全长VWF高四倍。在剪切力作用下,生理水平的ADAMTS13不会切割HUVECs上的VWF链,除非血小板附着以在流动状态下拉伸这些链。此外,在剪切应力≥1 dyn/cm时,无论有无钙,VWF - 血小板链在剪切力作用下的切割效率相同。总体而言,低钙水平可能会促进细胞内VWF蛋白水解,尤其是在2A型VWD疾病期间。在生理相关的流体剪切力作用下,钙对VWF - 血小板链蛋白水解的影响可忽略不计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e17/5728285/d99c1b109946/advances009027absf1.jpg

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