Chinnaraj Mathivanan, Chen Zhiwei, Pelc Leslie A, Grese Zachary, Bystranowska Dominika, Di Cera Enrico, Pozzi Nicola
Edward A. Doisy Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, St. Louis, MO, 63104, USA.
Department of Biochemistry, Wroclaw University of Science and Technology, Wybrzeze Wyspianskiego 27, 50-370, Wroclaw, Poland.
Sci Rep. 2018 Feb 13;8(1):2945. doi: 10.1038/s41598-018-21304-1.
The clotting factor prothrombin exists in equilibrium between closed and open conformations, but the physiological role of these forms remains unclear. As for other allosteric proteins, elucidation of the linkage between molecular transitions and function is facilitated by reagents stabilized in each of the alternative conformations. The open form of prothrombin has been characterized structurally, but little is known about the architecture of the closed form that predominates in solution under physiological conditions. Using X-ray crystallography and single-molecule FRET, we characterize a prothrombin construct locked in the closed conformation through an engineered disulfide bond. The construct: (i) provides structural validation of the intramolecular collapse of kringle-1 onto the protease domain reported recently; (ii) documents the critical role of the linker connecting kringle-1 to kringle-2 in stabilizing the closed form; and (iii) reveals novel mechanisms to shift the equilibrium toward the open conformation. Together with functional studies, our findings define the role of closed and open conformations in the conversion of prothrombin to thrombin and establish a molecular framework for prothrombin activation that rationalizes existing phenotypes associated with prothrombin mutations and points to new strategies for therapeutic intervention.
凝血因子凝血酶原以封闭构象和开放构象之间的平衡状态存在,但其这些构象的生理作用仍不清楚。对于其他别构蛋白而言,稳定于每种替代构象的试剂有助于阐明分子转变与功能之间的联系。凝血酶原的开放构象已得到结构表征,但对于在生理条件下溶液中占主导的封闭构象的结构却知之甚少。我们利用X射线晶体学和单分子荧光共振能量转移技术,对通过工程化二硫键锁定在封闭构象的凝血酶原构建体进行了表征。该构建体:(i) 为最近报道的kringle-1向蛋白酶结构域的分子内折叠提供了结构验证;(ii) 证明了连接kringle-1与kringle-2的连接子在稳定封闭构象中的关键作用;(iii) 揭示了将平衡向开放构象转变的新机制。结合功能研究,我们的发现确定了封闭构象和开放构象在凝血酶原向凝血酶转化中的作用,并建立了凝血酶原激活的分子框架,该框架使与凝血酶原突变相关的现有表型合理化,并指出了治疗干预的新策略。