Department of Pathology and Laboratory Medicine, The Children's Hospital of Philadelphia, PA 19104, USA.
Blood. 2010 Mar 18;115(11):2300-10. doi: 10.1182/blood-2009-07-235101. Epub 2010 Jan 14.
Previous studies have shown that ADAMTS13 spacer domain is required for cleavage of von Willebrand factor (VWF). However, the exact amino acid residues within this domain critical for substrate recognition are not known. Epitope mapping of anti-ADAMTS13 immunoglobulin G from patients with thrombotic thrombocytopenic purpura and sequence alignment of the ADAMTS13 spacer domains of human, mouse, and zebrafish with these of human and murine ADAMTS1, a closely related member of ADAMTS family, have provided hints to investigate the role of the amino acid residues between Arg(659) and Glu(664) of the ADAMTS13 spacer domain in substrate recognition. A deletion of all these 6 amino acid residues (ie, Arg(659)-Glu(664)) from the ADAMTS13 spacer domain resulted in dramatically reduced proteolytic activity toward VWF73 peptides, guanidine-HCl denatured VWF, and native VWF under fluid shear stress, as well as ultralarge VWF on endothelial cells. Site-directed mutagenesis, kinetic analyses, and peptide inhibition assays have further identified a role for amino acid residues Arg(659), Arg(660), and Tyr(661) in proteolytic cleavage of various substrates under static and fluid shear stress conditions. These findings may provide novel insight into the structural-function relationship of ADAMTS13 and help us to understand pathogenesis of thrombotic thrombocytopenic purpura and other arterial thromboses associated with compromised VWF proteolysis.
先前的研究表明,ADAMTS13 间隔区对于 von Willebrand 因子(VWF)的切割是必需的。然而,对于这个关键的底物识别区域内的精确氨基酸残基尚不清楚。来自血栓性血小板减少性紫癜患者的抗 ADAMTS13 免疫球蛋白 G 的表位作图以及人、鼠和斑马鱼的 ADAMTS13 间隔区与人类和鼠 ADAMTS1 的序列比对,ADAMTS1 是 ADAMTS 家族中密切相关的成员,为研究 ADAMTS13 间隔区中 Arg(659)和 Glu(664)之间的氨基酸残基在底物识别中的作用提供了线索。从 ADAMTS13 间隔区中删除所有这 6 个氨基酸残基(即 Arg(659)-Glu(664)),导致 VWF73 肽、胍盐酸变性的 VWF 和在流体剪切应力下的天然 VWF 以及内皮细胞上的超大 VWF 的蛋白水解活性显著降低。定点突变、动力学分析和肽抑制实验进一步确定了 Arg(659)、Arg(660)和 Tyr(661)氨基酸残基在静态和流体剪切应力条件下对各种底物的蛋白水解切割中的作用。这些发现可能为 ADAMTS13 的结构-功能关系提供新的见解,并帮助我们理解血栓性血小板减少性紫癜和其他与 VWF 蛋白水解受损相关的动脉血栓形成的发病机制。