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从核糖核酸酶I缺陷型细菌中分离出的核糖体核糖核酸的物理性质

Physical properties of ribosomal ribonucleic acid isolated from bacteria deficient in ribonuclease I.

作者信息

Cammack K A, Miller D S, Grinstead K H

出版信息

Biochem J. 1970 May;117(4):745-55. doi: 10.1042/bj1170745.

Abstract
  1. Bacteria deficient in ribonuclease I were used as a source of stable ribosomal RNA. RNA was isolated from a ribosome fraction of Pseudomonas fluorescens N.C.I.B. 8248 and acetone-treated cells of Escherichia coli M.R.E. 600 by the method developed by Robinson & Wade (1968). 2. The s(20,w) of the 16S and 23S components can vary from 21S and 28S down to 4S depending on the RNA macro-ion concentration and the extent to which charge is suppressed by univalent Na(+) and tris(+) counter-ions or neutralized through the binding of bivalent Mg(2+) to phosphate groups. 3. The primary charge effect in sedimentation and the frictional coefficient (which increases as the molecular conformation expands) both increase with charge and cause a decrease in s value. 4. RNA solutions heated to 80 degrees C for 10min show minor changes in s value and a detectable increase in polydispersity. Millimolar concentrations of Mg(2+) promote heat-instability and so does treatment of RNA solutions with the nuclease adsorbent macaloid, which was found to contaminate the solutions with Mg(2+). 5. The stabilization of secondary structure by univalent and bivalent cations was investigated by optical methods. 6. The sedimentation properties of 30S and 50S ribosomal subunits and their constituent 16S and 23S RNA components were compared and discussed from the viewpoint of unfolding.
摘要
  1. 缺乏核糖核酸酶I的细菌被用作稳定核糖体RNA的来源。通过罗宾逊和韦德(1968年)开发的方法,从荧光假单胞菌N.C.I.B. 8248的核糖体部分以及大肠杆菌M.R.E. 600经丙酮处理的细胞中分离出RNA。2. 16S和23S组分的沉降系数s(20,w)可从21S和28S变化到4S,这取决于RNA宏观离子浓度以及单价Na(+)和三价阳离子(tris(+))对电荷的抑制程度或通过二价Mg(2+)与磷酸基团结合而实现的电荷中和程度。3. 沉降中的初级电荷效应和摩擦系数(随着分子构象扩展而增加)均随电荷增加而增大,并导致s值降低。4. 加热至80摄氏度持续10分钟的RNA溶液,其s值变化较小,且多分散性有可检测到的增加。毫摩尔浓度的Mg(2+)会促进热不稳定性,用核酸酶吸附剂麦饭石处理RNA溶液也会如此,发现麦饭石会使溶液被Mg(2+)污染。5. 通过光学方法研究了单价和二价阳离子对二级结构的稳定作用。6. 从解折叠的角度比较并讨论了30S和50S核糖体亚基及其组成的16S和23S RNA组分的沉降特性。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f40a/1179027/ca5aadc69b05/biochemj00679-0112-a.jpg

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