Vijayalakshmi J, Padmanabhan K P, Mann K G, Tulinsky A
Department of Chemistry, Michigan State University, East Lansing 48824-1322, USA.
Protein Sci. 1994 Dec;3(12):2254-71. doi: 10.1002/pro.5560031211.
The X-ray crystal structure of prethrombin2 (pre2), the immediate inactive precursor of alpha-thrombin, has been determined at 2.0 A resolution complexed with hirugen. The structure has been refined to a final R-value of 0.169 using 14,211 observed reflections in the resolution range 8.0-2.0 A. A total of 202 water molecules have also been located in the structure. Comparison with the hirugen-thrombin complex showed that, apart from the flexible beginning and terminal regions of the molecule, there are 4 polypeptide segments in pre2 differing in conformation from the active enzyme (Pro 186-Asp 194, Gly 216-Gly 223, Gly 142-Pro 152, and the Arg 15-Ile 16 cleavage region). The formation of the Ile 16-Asp 194 ion pair and the specificity pocket are characteristic of serine protease activation with the conformation of the catalytic triad being conserved. With the determination of isomorphous structures of hirugen-thrombin and D-Phe-Pro-Arg chloromethyl ketone (PPACK)-thrombin, the changes that occur in the active site that affect the kinetics of chromogenic substrate hydrolysis on binding to the fibrinogen recognition exosite have been determined. The backbone of the Ala 190-Gly 197 segment in the active site has an average RMS difference of 0.55 A between the 2 structures (about 3.7 sigma compared to the bulk structure). This segment has 2 type II beta-bends, the first bend showing the largest shift due to hirugen binding. Another important feature was the 2 different conformations of the side chain of Glu 192. The side chain extends to solvent in hirugen-thrombin, which is compatible with the binding of substrates having an acidic residue in the P3 position (protein-C, thrombin platelet receptor). In PPACK-thrombin, the side chain of Asp 189 and the segment Arg 221A-Gly 223 move to provide space for the inhibitor, whereas in hirugen-thrombin, the Ala 190-Gly 197 movement expands the active site region. Although 8 water molecules are expelled from the active site with PPACK binding, the inhibitor complex is resolvated with 5 other water molecules.
凝血酶原2(pre2)是α-凝血酶的直接无活性前体,其X射线晶体结构已在2.0 Å分辨率下与水蛭素复合测定。使用分辨率范围为8.0 - 2.0 Å的14,211个观察反射,该结构已精修至最终R值为0.169。结构中还总共定位了202个水分子。与水蛭素 - 凝血酶复合物的比较表明,除了分子的柔性起始和末端区域外,pre2中有4个多肽片段的构象与活性酶不同(Pro 186 - Asp 194、Gly 216 - Gly 223、Gly 142 - Pro 152以及Arg 15 - Ile 16裂解区域)。Ile 16 - Asp 194离子对和特异性口袋的形成是丝氨酸蛋白酶激活的特征,催化三联体的构象得以保留。通过测定水蛭素 - 凝血酶和D - Phe - Pro - Arg氯甲基酮(PPACK) - 凝血酶的同晶型结构,已经确定了活性位点中发生的影响与纤维蛋白原识别外位点结合时发色底物水解动力学的变化。活性位点中Ala 190 - Gly 197片段的主链在两种结构之间的平均RMS差异为0.55 Å(与整体结构相比约为3.7σ)。该片段有2个II型β-转角,第一个转角由于水蛭素结合而显示出最大的位移。另一个重要特征是Glu 192侧链的2种不同构象。在水蛭素 - 凝血酶中,侧链延伸至溶剂中,这与在P3位置具有酸性残基的底物(蛋白C、凝血酶血小板受体)的结合相兼容。在PPACK - 凝血酶中,Asp 189的侧链和Arg 221A - Gly 223片段移动以为抑制剂提供空间,而在水蛭素 - 凝血酶中,Ala 190 - Gly 197的移动扩展了活性位点区域。尽管PPACK结合时8个水分子从活性位点被排出,但抑制剂复合物又与另外5个水分子重新溶剂化。