Darr S C, Zito K, Smith D, Pace N R
Department of Biology, Indiana University, Bloomington 47405.
Biochemistry. 1992 Jan 21;31(2):328-33. doi: 10.1021/bi00117a003.
Ribonuclease P (RNase P) is a ribonucleoprotein enzyme which participates in processing precursor tRNAs. The RNA subunit contains the catalytic site and is capable of catalysis in the absence of the protein subunit. RNase P RNAs from various eubacteria consist of a core of conserved sequence and secondary structure which is evolutionarily modified in different organisms by the presence of discrete helical elements at various sites in the RNAs. The variable occurrence of these helical elements suggests that they have no important functional role in the enzyme. The Escherichia coli RNase P RNA contains four such elements. It has been shown that simultaneous deletion of all four of them produces an RNA that is functional but has several significant defects which could arise from general disruption of the RNA or from the loss of element-specific functions. This paper describes a more detailed analysis of the role of the variable elements in E. coli RNase P RNA. Removal of one of the elements had no apparent effect on RNase P activity in vitro. Two other elements are required for correct folding of the RNA: their absence confers a requirement for extremely high monovalent salt concentrations, apparently to reduce intramolecular electrostatic repulsion. The fourth element that was tested participates in a long-range structural interaction (pseudoknot) which contributes to the structural stability of the enzyme and affects substrate binding affinity. In the absence of this helix, the RNA becomes temperature-sensitive, and the KM increases 100-fold.(ABSTRACT TRUNCATED AT 250 WORDS)
核糖核酸酶P(RNase P)是一种核糖核蛋白酶,参与前体tRNA的加工过程。RNA亚基含有催化位点,在没有蛋白质亚基的情况下也能够进行催化。来自各种真细菌的RNase P RNA由保守序列和二级结构的核心组成,在不同生物体中,由于RNA不同位点存在离散的螺旋元件,该核心在进化过程中发生了修饰。这些螺旋元件的可变出现表明它们在该酶中没有重要的功能作用。大肠杆菌RNase P RNA包含四个这样的元件。已经表明,同时删除所有四个元件会产生一种具有功能但有几个显著缺陷的RNA,这些缺陷可能是由于RNA的普遍破坏或元件特异性功能的丧失引起的。本文描述了对大肠杆菌RNase P RNA中可变元件作用的更详细分析。去除其中一个元件对体外RNase P活性没有明显影响。另外两个元件是RNA正确折叠所必需的:它们的缺失使得需要极高的单价盐浓度,显然是为了减少分子内的静电排斥。测试的第四个元件参与一种远距离结构相互作用(假结),这种相互作用有助于酶的结构稳定性并影响底物结合亲和力。在没有这个螺旋的情况下,RNA对温度变得敏感,并且KM增加100倍。(摘要截短于250字)