Klemm Bradley P, Wu Nancy, Chen Yu, Liu Xin, Kaitany Kipchumba J, Howard Michael J, Fierke Carol A
Department of Biological Chemistry, University of Michigan, Ann Arbor, MI 48109, USA.
Program in Chemical Biology, University of Michigan, Ann Arbor, MI 48109, USA.
Biomolecules. 2016 May 13;6(2):27. doi: 10.3390/biom6020027.
Ribonuclease P (RNase P) is an essential endonuclease responsible for catalyzing 5' end maturation in precursor transfer RNAs. Since its discovery in the 1970s, RNase P enzymes have been identified and studied throughout the three domains of life. Interestingly, RNase P is either RNA-based, with a catalytic RNA subunit, or a protein-only (PRORP) enzyme with differential evolutionary distribution. The available structural data, including the active site data, provides insight into catalysis and substrate recognition. The hydrolytic and kinetic mechanisms of the two forms of RNase P enzymes are similar, yet features unique to the RNA-based and PRORP enzymes are consistent with different evolutionary origins. The various RNase P enzymes, in addition to their primary role in tRNA 5' maturation, catalyze cleavage of a variety of alternative substrates, indicating a diversification of RNase P function in vivo. The review concludes with a discussion of recent advances and interesting research directions in the field.
核糖核酸酶P(RNase P)是一种必需的内切核酸酶,负责催化前体转运RNA的5'末端成熟。自20世纪70年代发现以来,RNase P酶已在生命的三个域中被鉴定和研究。有趣的是,RNase P要么是基于RNA的,具有催化RNA亚基,要么是仅含蛋白质的(PRORP)酶,具有不同的进化分布。现有的结构数据,包括活性位点数据,为催化作用和底物识别提供了见解。两种形式的RNase P酶的水解和动力学机制相似,但基于RNA的酶和PRORP酶的独特特征与不同的进化起源一致。除了在tRNA 5'成熟中的主要作用外,各种RNase P酶还催化多种替代底物的切割,表明RNase P在体内功能的多样化。综述最后讨论了该领域的最新进展和有趣的研究方向。