Koeppe Julia R, Beach Muneera A, Baerga-Ortiz Abel, Kerns S Jordan, Komives Elizabeth A
Department of Chemistry and Biochemistry, University of California at San Diego, La Jolla, California 92093-0378, USA.
Biochemistry. 2008 Oct 14;47(41):10933-9. doi: 10.1021/bi8008278. Epub 2008 Sep 20.
A number of alanine and more conservative mutants of residues in the fourth domain of thrombomodulin (TM) were prepared and assayed for protein C activation and for thrombin binding. Several of the alanine mutations appeared to cause misfolding or structural defects as assessed by poor expression and/or NMR HSQC experiments, while more conservative mutations at the same site appeared to allow correct folding and preserved activity. Several of the conservative mutants bound more weakly to thrombin despite the fact that the fourth domain does not directly contact thrombin in the crystal structure of the thrombin-TM complex. A few of the mutant TM fragments bound thrombin with an affinity similar to that of the wild type but exhibited decreases in k cat for protein C activation. These mutants were also less able to cause a change in the steady state fluorescence of fluorescein-EGR-chloromethylketone bound to the active site of thrombin. These results suggest that some residues within the fourth domain of TM may primarily interact with protein C but others are functionally important for altering the way TM interacts with thrombin. Residues in the fourth domain that primarily affect k cat for protein C activation may do this by changing the active site of thrombin.
制备了凝血调节蛋白(TM)第四结构域中多个丙氨酸突变体以及更保守的残基突变体,并对其进行蛋白C激活和凝血酶结合检测。通过低表达和/或核磁共振氢-碳化学位移相关谱(NMR HSQC)实验评估,几个丙氨酸突变似乎导致了错误折叠或结构缺陷,而同一位置更保守的突变似乎允许正确折叠并保留活性。尽管在凝血酶-TM复合物的晶体结构中第四结构域不直接与凝血酶接触,但几个保守突变体与凝血酶的结合较弱。一些突变的TM片段与凝血酶的结合亲和力与野生型相似,但蛋白C激活的催化常数(k cat)降低。这些突变体也较难引起与凝血酶活性位点结合的荧光素-EGR-氯甲基酮稳态荧光的变化。这些结果表明,TM第四结构域内的一些残基可能主要与蛋白C相互作用,而其他残基对于改变TM与凝血酶的相互作用方式在功能上很重要。第四结构域中主要影响蛋白C激活k cat的残基可能通过改变凝血酶的活性位点来实现这一点。