Mohsen A W, Aull J L, Payne D M, Daron H H
Department of Animal and Dairy Sciences, Auburn University, Alabama 36849.
Biochemistry. 1995 Feb 7;34(5):1669-77. doi: 10.1021/bi00005a023.
Limited tryptic proteolysis was used to investigate conformational changes of thymidylate synthase from Lactobacillus casei induced by ligand binding. Most of the identified sites of proteolysis were between R72 and R178, a region that includes a large loop containing residues 90-139 that is absent in thymidylate synthase from most other sources. Hydrolysis at both ends of this region was affected by the presence of dUMP. With dUMP, the preference of initial hydrolysis at the N-terminus of this region was switched from R78 to R72, and hydrolysis at R178 was retarded; the latter effect may be primarily a consequence of steric hinderance since R178 is involved in binding the phosphate moiety of dUMP. Orthophosphate had an effect similar to that of dUMP, not only in retarding hydrolysis at the phosphate binding site (R178) but also in retarding hydrolysis at R78 in favor of R72. Alkylation of the catalytically essential sulfhydryl group of thymidylate synthase by iodoacetamide also resulted in R72 being favored over R78 as a site of initial proteolysis. Its effect on hydrolysis at R178 was, as expected, less than that of dUMP or phosphate. These results indicate that dUMP binding induces conformational changes in thymidylate synthase. Phosphate binding and sulfhydryl alkylation also induce conformational changes similar to those resulting from dUMP binding. While the similarity of the proteolytic behavior of thymidylate synthase in the presence of dUMP or phosphate agrees with the report by Finer-Moore et al.(ABSTRACT TRUNCATED AT 250 WORDS)
采用有限胰蛋白酶解方法,研究了配体结合诱导的干酪乳杆菌胸苷酸合酶的构象变化。大多数已鉴定的蛋白水解位点位于R72和R178之间,该区域包含一个大的环,其中含有90 - 139位的残基,而大多数其他来源的胸苷酸合酶中不存在该环。该区域两端的水解受dUMP存在的影响。有dUMP存在时,该区域N端初始水解的偏好从R78切换到R72,R178处的水解受到抑制;后一种效应可能主要是空间位阻的结果,因为R178参与结合dUMP的磷酸基团。正磷酸盐的作用与dUMP相似,不仅抑制磷酸结合位点(R178)的水解,还抑制R78处的水解而有利于R72处的水解。碘乙酰胺对胸苷酸合酶催化必需的巯基进行烷基化,也导致R72比R78更有利于初始蛋白水解位点。正如预期的那样,其对R178处水解的影响小于dUMP或磷酸盐。这些结果表明,dUMP结合诱导胸苷酸合酶的构象变化。磷酸盐结合和巯基烷基化也诱导与dUMP结合产生的构象变化相似的构象变化。虽然在dUMP或磷酸盐存在下胸苷酸合酶的蛋白水解行为相似,但这与Finer - Moore等人的报告一致。(摘要截断于250字)