Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, Saint Louis, MO 63104, USA.
Proc Natl Acad Sci U S A. 2010 Nov 9;107(45):19278-83. doi: 10.1073/pnas.1010262107. Epub 2010 Oct 25.
Prothrombin is the zymogen precursor of the clotting enzyme thrombin, which is generated by two sequential cleavages at R271 and R320 by the prothrombinase complex. The structure of prothrombin is currently unknown. Prethrombin-1 differs from prothrombin for the absence of 155 residues in the N-terminal domain and is composed of a single polypeptide chain containing fragment 2 (residues 156-271), A chain (residues 272-320), and B chain (residues 321-579). The X-ray crystal structure of prethrombin-1 solved at 2.2-Å resolution shows an overall conformation significantly different (rmsd = 3.6 Å) from that of its active form meizothrombin desF1 carrying a cleavage at R320. Fragment 2 is rotated around the y axis by 29° and makes only few contacts with the B chain. In the B chain, the oxyanion hole is disrupted due to absence of the I16-D194 ion pair and the Na(+) binding site and adjacent primary specificity pocket are highly perturbed. A remarkable feature of the structure is that the autolysis loop assumes a helical conformation enabling W148 and W215, located 17 Å apart in meizothrombin desF1, to come within 3.3 Å of each other and completely occlude access to the active site. These findings suggest that the zymogen form of thrombin possesses conformational plasticity comparable to that of the mature enzyme and have significant implications for the mechanism of prothrombin activation and the zymogen → protease conversion in trypsin-like proteases.
凝血酶原是凝血酶的酶原前体,凝血酶由凝血酶原酶复合物在 R271 和 R320 处的两个连续切割产生。凝血酶原的结构目前尚不清楚。前凝血酶-1与凝血酶原的不同之处在于其 N 端结构域缺失 155 个残基,由一条单链多肽组成,包含片段 2(残基 156-271)、A 链(残基 272-320)和 B 链(残基 321-579)。前凝血酶-1的 X 射线晶体结构在 2.2-Å 分辨率下解决,显示出与其活性形式 meizothrombin desF1 显著不同的整体构象(rmsd = 3.6Å),后者在 R320 处进行了切割。片段 2围绕 y 轴旋转 29°,仅与 B 链有少量接触。在 B 链中,由于 I16-D194 离子对和 Na(+)结合位点缺失,氧阴离子空洞被破坏,相邻的主要特异性口袋受到高度干扰。该结构的一个显著特征是自溶环呈螺旋构象,使位于 meizothrombin desF1 中相距 17Å 的 W148 和 W215 彼此相距 3.3Å,完全阻止了对活性位点的进入。这些发现表明,凝血酶原的酶原形式具有与成熟酶相当的构象可塑性,并对凝血酶原激活机制以及胰蛋白酶样蛋白酶中酶原-蛋白酶的转化具有重要意义。