Department of Physics and Center for NanoScience, LMU Munich, Munich, Germany.
Department of Dermatology and Venerology, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Blood Adv. 2022 Sep 13;6(17):5198-5209. doi: 10.1182/bloodadvances.2022006978.
Von Willebrand factor (VWF) is a multimeric plasma glycoprotein that is critically involved in hemostasis. Biosynthesis of long VWF concatemers in the endoplasmic reticulum and the trans-Golgi is still not fully understood. We use the single-molecule force spectroscopy technique magnetic tweezers to analyze a previously hypothesized conformational change in the D'D3 domain crucial for VWF multimerization. We find that the interface formed by submodules C8-3, TIL3, and E3 wrapping around VWD3 can open and expose 2 buried cysteines, Cys1099 and Cys1142, that are vital for multimerization. By characterizing the conformational change at varying levels of force, we can quantify the kinetics of the transition and stability of the interface. We find a pronounced destabilization of the interface on lowering the pH from 7.4 to 6.2 and 5.5. This is consistent with initiation of the conformational change that enables VWF multimerization at the D'D3 domain by a decrease in pH in the trans-Golgi network and Weibel-Palade bodies. Furthermore, we find a stabilization of the interface in the presence of coagulation factor VIII, providing evidence for a previously hypothesized binding site in submodule C8-3. Our findings highlight the critical role of the D'D3 domain in VWF biosynthesis and function, and we anticipate our methodology to be applicable to study other, similar conformational changes in VWF and beyond.
血管性血友病因子(VWF)是一种多聚体血浆糖蛋白,在止血中起着至关重要的作用。VWF 长多聚体在粗面内质网和反式高尔基体中的生物合成仍不完全清楚。我们使用单分子力谱技术磁镊来分析一个以前假设的 D'D3 结构域构象变化,这个变化对 VWF 多聚化至关重要。我们发现,由亚基 C8-3、TIL3 和 E3 包裹 VWD3 形成的界面可以打开并暴露 2 个埋藏的半胱氨酸 Cys1099 和 Cys1142,这对于多聚化至关重要。通过在不同力水平下对构象变化进行特征描述,我们可以量化该转变的动力学和界面的稳定性。我们发现,当 pH 值从 7.4 降低到 6.2 和 5.5 时,界面的稳定性明显降低。这与在反式高尔基体网络和 Weibel-Palade 体中 pH 值降低时,D'D3 结构域启动 VWF 多聚化的构象变化一致。此外,我们发现凝血因子 VIII 的存在稳定了界面,为亚基 C8-3 中假设的结合位点提供了证据。我们的研究结果突出了 D'D3 结构域在 VWF 生物合成和功能中的关键作用,我们预计我们的方法适用于研究 VWF 及其它类似构象变化。