Tepper A D, Dammann H, Bominaar A A, Véron M
Unité de Biochimie Cellulaire, CNRS-URA 1129, Institut Pasteur, Paris, France.
J Biol Chem. 1994 Dec 23;269(51):32175-80.
Nucleoside-diphosphate kinase (EC 2.7.4.6) catalyzes phosphate exchange between nucleoside triphosphates and nucleoside diphosphates. Its 17 kDa subunits are highly conserved throughout evolution in both sequence and tertiary structure. Using site-directed mutagenesis we investigated the function of 8 amino acids (Lys16, Tyr56, Arg92, Thr98, Arg109, Asn119, Ser124, and Glu133) that are totally conserved among all nucleoside diphosphate kinases known to date. The mutant proteins all show decreased specific activity and support roles for these residues in catalysis, substrate binding, or both, as was previously proposed on the basis of the x-ray structure (Moréra, S., Lascu, I., Dumas, C., LeBras, G., Briozzo, P., Véron, M., and Janin, J. (1994) Biochemistry 33, 459-467). Furthermore, residues Lys16, Arg109, and Asn 119 were identified to play important roles in conformational stability or subunit interactions. We show that Lys16 and Asn119 form a rigid structure that is important for enzymatic function and that Arg109, known to interact with the phosphate moiety of the substrate, also plays an important role in subunit association. The dual roles of Lys16, Arg109, and Asn119 in both substrate binding and subunit assembly provide further evidence for a functional coupling between catalytic activity and quaternary structure in nucleoside diphosphate kinase.
核苷二磷酸激酶(EC 2.7.4.6)催化核苷三磷酸和核苷二磷酸之间的磷酸交换。其17 kDa的亚基在进化过程中,在序列和三级结构上都高度保守。我们使用定点诱变技术研究了8个氨基酸(赖氨酸16、酪氨酸56、精氨酸92、苏氨酸98、精氨酸109、天冬酰胺119、丝氨酸124和谷氨酸133)的功能,这些氨基酸在迄今为止已知的所有核苷二磷酸激酶中都是完全保守的。突变蛋白的比活性均降低,这支持了这些残基在催化、底物结合或两者中所起的作用,正如之前基于X射线结构所提出的那样(莫雷拉,S.,拉斯库,I.,迪马,C.,勒布拉斯,G.,布里奥佐,P.,韦龙,M.,和贾宁,J.(1994年)《生物化学》33卷,459 - 467页)。此外,已确定赖氨酸16、精氨酸109和天冬酰胺119在构象稳定性或亚基相互作用中起重要作用。我们发现赖氨酸16和天冬酰胺119形成了一个对酶功能很重要的刚性结构,并且已知与底物磷酸基团相互作用的精氨酸109在亚基缔合中也起重要作用。赖氨酸16、精氨酸109和天冬酰胺119在底物结合和亚基组装中的双重作用,为核苷二磷酸激酶催化活性和四级结构之间的功能偶联提供了进一步的证据。