Moussaoui M, Guasch A, Boix E, Cuchillo C, Nogués M
Departament de Bioquímica i Biologia Molecular, Facultat de Ciències and Institut de Biologia Fonamental V. Villar-Palasí, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain Spain Spain.
J Biol Chem. 1996 Mar 1;271(9):4687-92. doi: 10.1074/jbc.271.9.4687.
Bovine pancreatic ribonuclease A catalyzes the depolymerization of RNA. There is much evidence that several subsites, in addition to the main catalytic site, are involved in the formation of the enzyme-substrate complex. This work analyzes the pattern of oligonucleotide formation by ribonuclease A using poly(C) as substrate. The poly(C) cleavage shows that the enzyme does not act in a random fashion but rather prefers the binding and cleavage of the longer substrate molecules and that the phosphodiester bond broken should be 6-7 residues apart from the end of the chain to be preferentially cleaved by ribonuclease A. The results demonstrate the model of the cleavage of an RNA chain based on the cooperative binding between the multisubsite binding structure of ribonuclease A and the phosphates of the polynucleotide (Parés, X., Nogués, M. V., de Llorens, R., and Cuchillo, C. M. (1991) in Essays in Biochemistry (Tipton, K. F., ed) Vol. 26, pp. 89-103, Portland Press Ltd., London). The contribution to the enzymatic process of the non-catalytic phosphate-binding subsite (p2) adjacent to the catalytic center has been analyzed in p2 chemically modified ribonuclease A or by means of site-directed mutagenesis. In both cases deletion of p2 abolishes the endonuclease activity of ribonuclease A, which is substituted by an exonuclease activity. All these results support the role of the multisubsite structure of the enzyme in the endonuclease activity and in the catalytic mechanism.
牛胰核糖核酸酶A催化RNA的解聚。有大量证据表明,除了主要催化位点外,还有几个亚位点参与酶-底物复合物的形成。这项工作分析了以聚(C)为底物时核糖核酸酶A形成寡核苷酸的模式。聚(C)的切割表明,该酶并非以随机方式起作用,而是更倾向于结合和切割较长的底物分子,并且被切割的磷酸二酯键应与要被核糖核酸酶A优先切割的链端相距6 - 7个残基。结果证明了基于核糖核酸酶A的多亚位点结合结构与多核苷酸磷酸之间的协同结合的RNA链切割模型(帕雷斯,X.,诺格斯,M. V.,德洛伦斯,R.,以及库西略,C. M.(1991年),载于《生物化学论文集》(蒂普顿,K. F.编)第26卷,第89 - 103页,波特兰出版社有限公司,伦敦)。已通过对p2化学修饰的核糖核酸酶A或借助定点诱变分析了与催化中心相邻的非催化性磷酸结合亚位点(p2)对酶促过程的贡献。在这两种情况下,p2的缺失都会消除核糖核酸酶A的内切核酸酶活性,取而代之的是外切核酸酶活性。所有这些结果都支持了该酶的多亚位点结构在内切核酸酶活性和催化机制中的作用。