Chen Jianchung, Zhou Hairu, Diacovo Alexander, Zheng X Long, Emsley Jonas, Diacovo Thomas G
Department of Pediatrics, Columbia University Medical Center, New York, NY;
Department of Pathology and Laboratory Medicine, The Children's Hospital of Philadelphia, Philadelphia, PA;
Blood. 2014 Dec 11;124(25):3799-807. doi: 10.1182/blood-2014-04-569392. Epub 2014 Oct 7.
Platelet-von Willebrand factor (VWF) interactions must be tightly regulated in order to promote effective hemostasis and prevent occlusive thrombus formation. However, it is unclear what role the inherent properties of the bond formed between the platelet receptor glycoprotein Ibα and the A1 domain of VWF play in these processes. Using VWF-A1 knock-in mice with mutations that enhance (I1309V) or disrupt (R1326H) platelet receptor glycoprotein Ibα binding, we now demonstrate that the kinetic interplay between two distinct contact surfaces influences the site and extent to which platelets bind VWF. Incorporation of R1326H mutation into the major site shortened bond lifetime, yielding defects in hemostasis and thrombosis comparable to VWF-deficient animals. Similarly, disrupting this region of contact with an allosteric inhibitor impaired human platelet accrual in damaged arterioles. In contrast, the I1309V mutation near the minor site prolonged bond lifetime, which was essential for the development of a type 2B-like VWD phenotype. However, combining the R1326H and I1309V mutations normalized both bond kinetics and the hemostatic and thrombotic properties of VWF. These findings broaden our understanding of mechanisms governing platelet-VWF interactions in health and disease, and underscore the importance of combined biophysical and genetic approaches in identifying potential therapeutic avenues for treating bleeding and thrombotic disorders.
血小板与血管性血友病因子(VWF)的相互作用必须受到严格调控,以促进有效的止血并防止闭塞性血栓形成。然而,尚不清楚血小板受体糖蛋白Ibα与VWF的A1结构域之间形成的键的固有特性在这些过程中起什么作用。我们利用携带增强(I1309V)或破坏(R1326H)血小板受体糖蛋白Ibα结合的突变的VWF-A1基因敲入小鼠,证明了两个不同接触表面之间的动力学相互作用会影响血小板结合VWF的位点和程度。将R1326H突变引入主要位点会缩短键的寿命,导致止血和血栓形成缺陷,类似于VWF缺陷动物。同样,用变构抑制剂破坏这个接触区域会损害受损小动脉中人类血小板的聚集。相比之下,次要位点附近的I1309V突变延长了键的寿命,这对于2B型血管性血友病(VWD)样表型的发展至关重要。然而,将R1326H和I1309V突变结合起来可使VWF的键动力学以及止血和血栓形成特性恢复正常。这些发现拓宽了我们对健康和疾病中血小板-VWF相互作用调控机制的理解,并强调了结合生物物理和遗传学方法在确定治疗出血和血栓性疾病潜在治疗途径方面的重要性。