Yan H G, Dahnke T, Zhou B B, Nakazawa A, Tsai M D
Department of Chemistry, Ohio State University, Columbus 43210.
Biochemistry. 1990 Dec 11;29(49):10956-64. doi: 10.1021/bi00501a013.
The substrate binding sites of adenylate kinase (AK) proposed by X-ray crystallographic studies [Pai, E. F., Sachsenheimer, W., Schirmer, R. H., & Schulz, G. E. (1977) J. Mol. Biol. 114, 37-45, and subsequent revisions] were evaluated by site-specific mutagenesis in conjunction with structural analysis by NMR. The residues examined in this report include two near an adenosine site (threonine-39 and arginine-44) and two in the phosphate binding region (arginine-128 and arginine-149). The results and conclusions are summarized as follows: (a) Although Thr-39 is very close to an adenine site [Egner, U., Tomasselli, A. G., & Schulz, G. E. (1987) J. Mol. Biol. 195, 649-658], it is nonessential either structurally or functionally. (b) The R44M mutant enzyme showed significant increases in the Michaelis and dissociation constants of adenosine 5'-monophosphate (AMP) (36- and 22-fold, respectively) while all other kinetic parameters were relatively unperturbed. The proton NMR property of this mutant was unchanged in the free enzyme and only slightly perturbed in the binary complexes with AMP and with MgATP (adenosine 5'-triphosphate), and in the ternary complex with MgAP5A [P1,P5-bis(5'-adenosyl) pentaphosphate]. These results indicate that Arg-44 interacts specifically with AMP starting at the binary complex, and suggest that the MgATP site proposed by Pai et al. (1977) is likely to be the AMP site. (c) The kinetic parameters of R149M were dramatically perturbed: kcat decreased by a factor of 1540, Km increased to 130-fold, and kcat/Km decreased by a factor of 2 X 10(5).(ABSTRACT TRUNCATED AT 250 WORDS)
通过X射线晶体学研究提出的腺苷酸激酶(AK)的底物结合位点[派伊,E.F.,萨克森海默,W.,席尔默,R.H.,&舒尔茨,G.E.(1977年)《分子生物学杂志》114卷,37 - 45页,以及后续修订版],通过定点诱变结合核磁共振结构分析进行了评估。本报告中研究的残基包括腺苷位点附近的两个(苏氨酸 - 39和精氨酸 - 44)以及磷酸结合区域的两个(精氨酸 - 128和精氨酸 - 149)。结果和结论总结如下:(a)尽管苏氨酸 - 39非常靠近腺嘌呤位点[埃格纳,U.,托马塞利,A.G.,&舒尔茨,G.E.(1987年)《分子生物学杂志》195卷,649 - 658页],但在结构和功能上它并非必需。(b)R44M突变酶的腺苷 - 5'-单磷酸(AMP)的米氏常数和解离常数显著增加(分别增加36倍和22倍),而所有其他动力学参数相对未受干扰。该突变体在游离酶中的质子核磁共振特性未改变,在与AMP和MgATP(腺苷 - 5'-三磷酸)形成的二元复合物以及与MgAP5A [P1,P5 - 双(5'-腺苷基)五磷酸]形成的三元复合物中仅略有扰动。这些结果表明精氨酸 - 44从二元复合物开始就与AMP特异性相互作用,并表明派伊等人(1977年)提出的MgATP位点可能是AMP位点。(c)R149M的动力学参数受到极大扰动:催化常数kcat降低了1540倍,米氏常数Km增加到130倍,kcat/Km降低了2×10⁵倍。(摘要截断于250字)