Serpersu E H, Shortle D, Mildvan A S
Biochemistry. 1986 Jan 14;25(1):68-77. doi: 10.1021/bi00349a011.
The X-ray structure of staphylococcal nuclease suggests octahedral coordination of the essential Ca2+, with Asp-21, Asp-40, and Thr-41 of the enzyme providing three of the six ligands [Cotton, F. A., Hazen, E. E., Jr., & Legg, M. J. (1979) Proc. Natl. Acad. Sci. U.S.A. 76, 2551-2555]. The Asp-40 codon was mutated to Gly-40 on the gene that had been cloned into Escherichia coli, and the mutant (D40G) and wild-type enzymes were both purified from E. coli by a simple procedure. The D40G mutant forms a (5 +/- 2)-fold weaker binary complex with Ca2+ as found by kinetic analysis and by Ca2+ binding studies in competition with Mn2+, a linear competitive inhibitor. Similarly, as found by electron paramagnetic resonance (EPR), Mn2+ binds to the D40G mutant with a 3-fold greater KD than that found with the wild-type enzyme. These differences in KD are increased by saturation of staphylococcal nuclease with the DNA substrate such that KmCa is 10-fold greater and KIMn is 15-fold greater for the mutant than for the wild-type enzyme, although KMDNA is only 1.5-fold greater in the mutant. The six dissociation constants of the ternary enzyme-Mn2+-nucleotide complexes of 3',5'-pdTp and 5'-TMP were determined by EPR and by paramagnetic effects on 1/T1 of water protons, and the dissociation constants of the corresponding Ca2+ complexes were determined by competition with Mn2+. Only small differences between the mutant and wild-type enzymes are noted in K3, the dissociation constant of the nucleotides from their respective ternary complexes. 3',5'-pdTp raises the affinities of both wild-type and mutant enzymes for Mn2+ by factors of 47 and 31, respectively, while 5'-TMP raises the affinities of the enzymes for Mn2+ by smaller factors of 6.8 and 4.4, respectively. Conversely, Mn2+ raises the affinities of both wild-type and mutant enzymes for the nucleotides by 1-2 orders of magnitude. Analogous effects are observed in the ternary Ca2+ complexes. Dissociation constants of Ca2+ and Mn2+ from binary and ternary complexes, measured by direct binding studies, show reasonable agreement with those obtained by kinetic analysis. Structural differences in the ternary metal complexes of the D40G mutant are revealed by a 31-fold decrease in Vmax with Ca2+ and by 1.4-3.1-fold decreases in the enhancement of 1/T1 of water protons with Mn2+.(ABSTRACT TRUNCATED AT 400 WORDS)
葡萄球菌核酸酶的X射线结构表明,必需的Ca2+呈八面体配位,该酶的天冬氨酸-21、天冬氨酸-40和苏氨酸-41提供了六个配体中的三个[科顿,F.A.,黑曾,E.E.,小,&莱格,M.J.(1979年)美国国家科学院院刊76,2551 - 2555]。将已克隆到大肠杆菌中的基因上的天冬氨酸-40密码子突变为甘氨酸-40,通过一个简单的程序从大肠杆菌中纯化出突变体(D40G)和野生型酶。动力学分析以及与线性竞争性抑制剂锰离子的钙离子结合研究表明,D40G突变体与Ca2+形成的二元复合物弱(5±2)倍。同样,通过电子顺磁共振(EPR)发现,锰离子与D40G突变体结合的解离常数(KD)比野生型酶大3倍。葡萄球菌核酸酶被DNA底物饱和后,这些KD的差异增大,使得突变体的KmCa比野生型酶大10倍,KIMn大15倍,尽管突变体的KMDNA仅大1.5倍。通过EPR以及对水质子1/T1的顺磁效应测定了3',5'-pdTp和5'-TMP的三元酶-锰离子-核苷酸复合物的六个解离常数,通过与锰离子竞争测定了相应钙离子复合物的解离常数。在核苷酸从各自三元复合物的解离常数K3方面,突变体和野生型酶之间仅发现微小差异。3',5'-pdTp分别使野生型和突变型酶对锰离子的亲和力提高了47倍和31倍,而5'-TMP分别使酶对锰离子的亲和力提高了较小的6.8倍和4.4倍。相反,锰离子使野生型和突变型酶对核苷酸的亲和力提高了1 - 2个数量级。在三元钙离子复合物中也观察到类似的效应。通过直接结合研究测量的二元和三元复合物中Ca2+和Mn2+的解离常数与动力学分析得到的结果显示出合理的一致性。D40G突变体的三元金属复合物的结构差异表现为,以Ca2+时Vmax降低31倍,以Mn2+时水质子1/T1增强降低1.4 - 3.1倍。(摘要截短至400字)