Kim Juhyun, Shen Rongkun, Olcott Michael C, Rajagopal Indira, Mathews Christopher K
Department of Biochemistry and Biophysics, Oregon State University, Corvallis, Oregon 97331-7305, USA.
J Biol Chem. 2005 Aug 5;280(31):28221-9. doi: 10.1074/jbc.M502201200. Epub 2005 Jun 7.
Adenylate kinase, which catalyzes the reversible ATP-dependent phosphorylation of AMP to ADP and dAMP to dADP, can also catalyze the conversion of nucleoside diphosphates to the corresponding triphosphates. Lu and Inouye (Lu, Q., and Inouye, M. (1996) Proc. Natl. Acad. Sci. U. S. A. 93, 5720-5725) showed that an Escherichia coli ndk mutant, lacking nucleoside diphosphate kinase, can use adenylate kinase as an alternative source of nucleoside triphosphates. Bacteriophage T4 can reproduce in an Escherichia coli ndk mutant, implying that adenylate kinase can meet a demand for deoxyribonucleoside triphosphates that increases by up to 10-fold as a result of T4 infection. In terms of kinetic linkage and specific protein-protein associations, NDP kinase is an integral component of T4 dNTP synthetase, a multienzyme complex containing phage-coded enzymes, which facilitates the synthesis of dNTPs and their flow into DNA. Here we asked whether, by similar criteria, adenylate kinase of the host cell is also a specific component of the complex. Experiments involving protein affinity chromatography, immunoprecipitation, optical biosensor measurements, and glutathione S-transferase pulldowns demonstrated direct interactions between adenylate kinase and several phage-coded enzymes, as well as E. coli nucleoside diphosphate kinase. These results identify adenylate kinase as a specific component of the complex. The rate of DNA synthesis after infection of an ndk mutant was found to be about 40% of the rate seen in wild-type infection, implying that complementation of the missing NDP kinase function by adenylate kinase is fairly efficient, but that adenylate kinase becomes rate-limiting for DNA synthesis when it is the sole source of dNTPs.
腺苷酸激酶催化AMP在ATP依赖下可逆磷酸化为ADP以及dAMP磷酸化为dADP,它还能催化核苷二磷酸转化为相应的三磷酸核苷。陆和井上(陆,Q.,和井上,M.(1996年)《美国国家科学院院刊》93卷,5720 - 5725页)表明,缺乏核苷二磷酸激酶的大肠杆菌ndk突变体能够利用腺苷酸激酶作为核苷三磷酸的替代来源。噬菌体T4能够在大肠杆菌ndk突变体中繁殖,这意味着腺苷酸激酶能够满足因T4感染而增加高达10倍的脱氧核糖核苷三磷酸需求。就动力学联系和特定的蛋白质 - 蛋白质相互作用而言,核苷二磷酸激酶是T4 dNTP合成酶的一个组成部分,T4 dNTP合成酶是一种包含噬菌体编码酶的多酶复合物,它促进dNTP的合成及其流入DNA。在此我们探究,按照类似标准,宿主细胞的腺苷酸激酶是否也是该复合物的特定组成部分。涉及蛋白质亲和色谱、免疫沉淀、光学生物传感器测量以及谷胱甘肽S - 转移酶下拉实验的结果表明,腺苷酸激酶与几种噬菌体编码酶以及大肠杆菌核苷二磷酸激酶之间存在直接相互作用。这些结果确定腺苷酸激酶是该复合物的特定组成部分。发现感染ndk突变体后DNA合成速率约为野生型感染时速率的40%,这意味着腺苷酸激酶对缺失的核苷二磷酸激酶功能的互补相当有效,但当腺苷酸激酶是dNTP的唯一来源时,它会成为DNA合成的限速因素。