Hsieh John, Andrews Andy J, Fierke Carol A
Chemistry Department, University of Michigan, 930 N. University, Ann Arbor, MI 48109, USA.
Biopolymers. 2004 Jan;73(1):79-89. doi: 10.1002/bip.10521.
Ribonucleoproteins (RNP) are involved in many essential processes in life. However, the roles of RNA and protein subunits in an RNP complex are often hard to dissect. In many RNP complexes, including the ribosome and the Group II introns, one main function of the protein subunits is to facilitate RNA folding. However, in other systems, the protein subunits may perform additional functions, and can affect the biological activities of the RNP complexes. In this review, we use ribonuclease P (RNase P) as an example to illustrate how the protein subunit of this RNP affects different aspects of catalysis. RNase P plays an essential role in the processing of the precursor to transfer RNA (pre-tRNA) and is found in all three domains of life. While every cell has an RNase P (ribonuclease P) enzyme, only the bacterial and some of the archaeal RNase P RNAs (RNA component of RNase P) are active in vitro in the absence of the RNase P protein. RNase P is a remarkable enzyme in the fact that it has a conserved catalytic core composed of RNA around which a diverse array of protein(s) interact to create the RNase P holoenzyme. This combination of highly conserved RNA and altered protein components is a puzzle that allows the dissection of the functional roles of protein subunits in these RNP complexes.
核糖核蛋白(RNP)参与生命中的许多基本过程。然而,RNA和蛋白质亚基在RNP复合物中的作用往往难以剖析。在许多RNP复合物中,包括核糖体和II类内含子,蛋白质亚基的一个主要功能是促进RNA折叠。然而,在其他系统中,蛋白质亚基可能执行额外的功能,并能影响RNP复合物的生物学活性。在本综述中,我们以核糖核酸酶P(RNase P)为例,来说明这种RNP的蛋白质亚基如何影响催化作用的不同方面。RNase P在转运RNA前体(pre-tRNA)的加工过程中起着至关重要的作用,并且在生命的三个域中都有发现。虽然每个细胞都有一种RNase P(核糖核酸酶P)酶,但只有细菌和一些古细菌的RNase P RNA(RNase P的RNA组分)在没有RNase P蛋白的情况下在体外具有活性。RNase P是一种非凡的酶,因为它有一个由RNA组成的保守催化核心,围绕该核心有多种蛋白质相互作用以形成RNase P全酶。高度保守的RNA和变化的蛋白质组分的这种组合是一个谜题,它使得剖析这些RNP复合物中蛋白质亚基的功能作用成为可能。