Crystal and Structural Chemistry, Bijvoet Center for Biomolecular Research, Department of Chemistry, Faculty of Science, Utrecht University, Padualaan 8, 3584 CH, Utrecht, The Netherlands.
Proc Natl Acad Sci U S A. 2012 Apr 3;109(14):5253-8. doi: 10.1073/pnas.1112388109. Epub 2012 Mar 21.
Fibrillar collagens, the most abundant proteins in the vertebrate body, are involved in a plethora of biological interactions. Plasma protein von Willebrand factor (VWF) mediates adhesion of blood platelets to fibrillar collagen types I, II, and III, which is essential for normal haemostasis. High affinity VWF-binding sequences have been identified in the homotrimeric collagen types II and III, however, it is unclear how VWF recognizes the heterotrimeric collagen type I, the superstructure of which is unknown. Here we present the crystal structure of VWF domain A3 bound to a collagen type III-derived homotrimeric peptide. Our structure reveals that VWF-A3 interacts with all three collagen chains and binds through conformational selection to a sequence that is one triplet longer than was previously appreciated from platelet and VWF binding studies. The VWF-binding site overlaps those of SPARC (also known as osteonectin) and discodin domain receptor 2, but is more extended and shifted toward the collagen amino terminus. The observed collagen-binding mode of VWF-A3 provides direct structural constraints on collagen I chain registry. A VWF-binding site can be generated from the sequences RGQAGVMF, present in the two α1(I) chains, and RGEOGNIGF, in the unique α2(I) chain, provided that α2(I) is in the middle or trailing position. Combining these data with previous structural data on integrin binding to collagen yields strong support for the trailing position of the α2(I) chain, shedding light on the fundamental and long-standing question of the collagen I chain registry.
纤维胶原是脊椎动物体内最丰富的蛋白质,参与了大量的生物学相互作用。血浆蛋白血管性血友病因子(VWF)介导血小板与纤维胶原 I、II 和 III 的黏附,这对于正常止血至关重要。在同源三聚体胶原 II 和 III 中已经鉴定出高亲和力的 VWF 结合序列,然而,VWF 如何识别异三聚体胶原 I 仍不清楚,其超结构尚不清楚。在这里,我们展示了 VWF 结构域 A3 与胶原 III 衍生的同源三聚体肽结合的晶体结构。我们的结构揭示了 VWF-A3 与所有三条胶原链相互作用,并通过构象选择结合到一个比以前从血小板和 VWF 结合研究中认识到的序列长一个三联体的序列。VWF 结合位点与 SPARC(也称为骨粘连蛋白)和 discodin 结构域受体 2 的结合位点重叠,但更扩展并向胶原氨基末端移动。观察到的 VWF-A3 胶原结合模式为胶原 I 链注册提供了直接的结构约束。VWF 结合位点可以从存在于两条α1(I)链中的 RGQAGVMF 和存在于独特的α2(I)链中的 RGEOGNIGF 序列中产生,前提是α2(I)处于中间或尾随位置。将这些数据与以前关于整合素与胶原结合的结构数据相结合,强烈支持α2(I)链的尾随位置,为胶原 I 链注册的基本和长期存在的问题提供了启示。