Lynch Christopher J, Lane David A
Centre for Haematology, Department of Medicine, Imperial College London, London, United Kingdom.
Blood. 2016 Mar 31;127(13):1711-8. doi: 10.1182/blood-2015-09-672014. Epub 2016 Jan 14.
Shear forces in the blood trigger a conformational transition in the von Willebrand factor (VWF) A2 domain, from its native folded to an unfolded state, in which the cryptic scissile bond (Y1605-M1606) is exposed and can then be proteolysed by ADAMTS13. The conformational transition depends upon a Ca(2+)binding site and a vicinal cysteine disulfide bond. Glycosylation at N1574 has previously been suggested to modulate VWF A2 domain interaction with ADAMTS13 through steric hindrance by the bulky carbohydrate structure. We investigated how the N-linked glycans of the VWF A2 domain affect thermostability and regulate both the exposure of the ADAMTS13 binding sites and the scissile bond. We show by differential scanning fluorimetry that the N-linked glycans thermodynamically stabilize the VWF A2 domain. The essential component of the glycan structure is the first sugar residue (GlcNAc) at the N1574 attachment site. From its crystal structures, N1574-GlcNAc is predicted to form stabilizing intradomain interactions with Y1544 and nearby residues. Substitution of the surface-exposed Y1544 to aspartic acid is able to stabilize the domain in the absence of glycosylation and protect against ADAMTS13 proteolysis in both the VWF A2 domain and FLVWF. Glycan stabilization of the VWF A2 domain acts together with the Ca(2+)binding site and vicinal cysteine disulfide bond to control unfolding and ADAMTS13 proteolysis.
血液中的剪切力会引发血管性血友病因子(VWF)A2结构域的构象转变,从其天然折叠状态转变为未折叠状态,此时隐蔽的可裂解键(Y1605-M1606)暴露出来,随后可被ADAMTS13进行蛋白水解。这种构象转变取决于一个Ca(2+)结合位点和一个相邻的半胱氨酸二硫键。此前有研究表明,N1574位点的糖基化通过庞大的碳水化合物结构产生的空间位阻来调节VWF A2结构域与ADAMTS13的相互作用。我们研究了VWF A2结构域的N-连接聚糖如何影响热稳定性,并调节ADAMTS13结合位点和可裂解键的暴露。我们通过差示扫描荧光法表明,N-连接聚糖在热力学上稳定了VWF A2结构域。聚糖结构的关键成分是N1574连接位点的第一个糖残基(GlcNAc)。从其晶体结构预测,N1574-GlcNAc会与Y1544及附近残基形成稳定的结构域内相互作用。将表面暴露的Y1544替换为天冬氨酸能够在无糖基化的情况下稳定该结构域,并在VWF A2结构域和全长VWF中防止ADAMTS13的蛋白水解。VWF A2结构域的聚糖稳定作用与Ca(2+)结合位点和相邻的半胱氨酸二硫键共同作用,以控制结构域的展开和ADAMTS13的蛋白水解。