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非催化性磷酸结合亚位点对牛胰核糖核酸酶A作用机制的贡献。

The contribution of noncatalytic phosphate-binding subsites to the mechanism of bovine pancreatic ribonuclease A.

作者信息

Nogués M V, Moussaoui M, Boix E, Vilanova M, Ribó M, Cuchillo C M

机构信息

Department de Bioquimica i Biologia Molecular, Facultat de Ciències, Universitat Autònoma de Barcelona, Bellaterra, Spain.

出版信息

Cell Mol Life Sci. 1998 Aug;54(8):766-74. doi: 10.1007/s000180050205.

Abstract

The enzymatic catalysis of polymeric substrates such as proteins, polysaccharides or nucleic acids requires precise alignment between the enzyme and the substrate regions flanking the region occupying the active site. In the case of ribonucleases, enzyme-substrate binding may be directed by electrostatic interactions between the phosphate groups of the RNA molecule and basic amino acid residues on the enzyme. Specific interactions between the nitrogenated bases and particular amino acids in the active site or adjacent positions may also take place. The substrate-binding subsites of ribonuclease A have been characterized by structural and kinetic studies. In addition to the active site (p1), the role of other noncatalytic phosphate-binding subsites in the correct alignment of the polymeric substrate has been proposed. p2 and p0 have been described as phosphate-binding subsites that bind the phosphate group adjacent to the 3' side and 5' side, respectively, of the phosphate in the active site. In both cases, basic amino acids (Lys-7 and Arg-10 in p2, and Lys-66 in p0) are involved in binding. However, these binding sites play different roles in the catalytic process of ribonuclease A. The electrostatic interactions in p2 are important both in catalysis and in the endonuclease activity of the enzyme, whilst the p0 electrostatic interaction contributes only to binding of the RNA.

摘要

对蛋白质、多糖或核酸等聚合底物的酶催化作用要求酶与占据活性位点区域两侧的底物区域之间精确对齐。就核糖核酸酶而言,酶 - 底物结合可能由RNA分子的磷酸基团与酶上的碱性氨基酸残基之间的静电相互作用引导。活性位点或相邻位置的含氮碱基与特定氨基酸之间也可能发生特异性相互作用。核糖核酸酶A的底物结合亚位点已通过结构和动力学研究得以表征。除了活性位点(p1)外,还提出了其他非催化性磷酸结合亚位点在聚合底物正确对齐中的作用。p2和p0已被描述为分别结合活性位点中磷酸基团3'侧和5'侧相邻磷酸基团的磷酸结合亚位点。在这两种情况下,碱性氨基酸(p2中的Lys - 7和Arg - 10以及p0中的Lys - 66)参与结合。然而,这些结合位点在核糖核酸酶A的催化过程中发挥不同作用。p2中的静电相互作用在催化以及酶的内切核酸酶活性中都很重要,而p0静电相互作用仅有助于RNA的结合。

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