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天然及化学诱导的寡聚核糖核酸酶:固定化金属离子亲和电泳的结构研究及其功能关系

Natural and chemically induced oligomeric ribonucleases: structural study by immobilized metal ion affinity electrophoresis and their functional relationship.

作者信息

Anissimova Maria V, Baek Won-Ok, Varlamov Valery P, Mrabet Nadir T, Vijayalakshmi Mookambeswaran A

机构信息

Laboratoire d'Interactions Moléculaires et de Technologie des Séparations (LIMTech.S), Université de Technologie de Compiégne, Centre de Recherche de Royallieu BP 20 529, 60 205 Compiégne Cedex, France.

出版信息

J Mol Recognit. 2006 Jul-Aug;19(4):287-98. doi: 10.1002/jmr.791.

Abstract

Oligomerization can endow proteins with novel structural and catalytic properties. The native dimer of bovine seminal ribonucleases (BS-RNase) binds, melts and catalyses the hydrolysis of double-stranded ribonucleic acids 30-fold better than its pancreatic homologue, the monomeric RNase A. Chemically induced oligomers of pancreatic RNase A are also found to show an increase in enzyme activity on double-stranded poly(A).poly(U) (Libonati, M. Bertoldi, M. and Sorrentino, S. (1996) Biochem. J. 318, 287-290) and, therefore, can be considered as potential immunosuppressive and cytotoxic agents. We report here a study on the relationship between surface histidine topography in oligomeric forms of these ribonucleases and their catalytic properties. Subtle changes in structure conformation of both BS-RNase and oligomeric RNase A are shown to result in a modification of the affinity of these proteins toward the immobilized transition-metal chelate, IDA-Cu(II). Because, such conformational change has been shown to correlate with an improvement of the newly acquired biological activities upon oligomerization, we can conclude that surface histidines topography constitutes an exquisite probe for the study of protein structure/function relationship.

摘要

寡聚化可赋予蛋白质新的结构和催化特性。牛精核糖核酸酶(BS-RNase)的天然二聚体结合、解链并催化双链核糖核酸水解的能力比其胰腺同源物单体核糖核酸酶A强30倍。化学诱导的胰腺核糖核酸酶A寡聚物也被发现对双链聚(A)·聚(U)的酶活性有所增加(利博纳蒂,M. 贝尔托迪,M. 和索伦蒂诺,S.(1996年)《生物化学杂志》318卷,287 - 290页),因此可被视为潜在的免疫抑制和细胞毒性剂。我们在此报告一项关于这些核糖核酸酶寡聚形式的表面组氨酸拓扑结构与其催化特性之间关系的研究。结果表明,BS-RNase和寡聚核糖核酸酶A的结构构象细微变化会导致这些蛋白质对固定化过渡金属螯合物IDA-Cu(II)的亲和力发生改变。由于这种构象变化已被证明与寡聚化后新获得的生物活性的改善相关,我们可以得出结论,表面组氨酸拓扑结构构成了研究蛋白质结构/功能关系的精确探针。

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