Evnin L B, Vásquez J R, Craik C S
Department of Biochemistry, University of California, San Francisco 94143.
Proc Natl Acad Sci U S A. 1990 Sep;87(17):6659-63. doi: 10.1073/pnas.87.17.6659.
The structural determinants of the primary substrate specificity of rat anionic trypsin were examined by using oligonucleotide-directed mutagenesis coupled to a genetic selection. A library was created that encoded trypsins substituted at amino acid positions 189 and 190 at the base of the substrate binding pocket. A genetic selection, with a dynamic range of 5 orders of proteolytic activity, was used to search 90,000 transformants of the library. Rapid screening for arginyl amidolysis and esterolysis confirmed the activity of the purified isolates. Trypsin and 15 mutant trypsins with partially preserved function were identified and characterized kinetically on arginyl and lysyl peptide substrates. Alternative arrangements of amino acids in the substrate binding pocket sustained efficient catalysis. A negative charge at amino acid position 189 or 190 was shown to be essential for high-level catalysis. With the favored aspartic acid residue at position 189, several amino acids could replace serine at position 190. Modulation of the specificity for arginine and lysine substrates was shown to depend on the amino acid at position 190. The regulatory effect of the amino acid side chain at position 190 on the substrate specificity is also reflected in substrate binding pockets of naturally occurring trypsin homologs.
通过使用寡核苷酸定向诱变结合遗传筛选,研究了大鼠阴离子胰蛋白酶主要底物特异性的结构决定因素。构建了一个文库,该文库编码在底物结合口袋底部氨基酸位置189和190处被取代的胰蛋白酶。利用一个蛋白水解活性动态范围为5个数量级的遗传筛选方法,对该文库的90,000个转化子进行了筛选。通过对精氨酰胺水解和酯水解的快速筛选,证实了纯化分离物的活性。鉴定出胰蛋白酶和15种功能部分保留的突变型胰蛋白酶,并在精氨酰和赖氨酰肽底物上进行了动力学表征。底物结合口袋中氨基酸的不同排列维持了高效催化。结果表明,氨基酸位置189或190处的负电荷对于高水平催化至关重要。当189位为有利的天冬氨酸残基时,几种氨基酸可以取代190位的丝氨酸。对精氨酸和赖氨酸底物特异性的调节取决于190位的氨基酸。190位氨基酸侧链对底物特异性的调节作用也反映在天然存在的胰蛋白酶同源物的底物结合口袋中。