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球形红假单胞菌N.C.I.B. 8253和大肠杆菌M.R.E. 600的大核糖体亚基的解折叠和解离比较

A comparison of the unfolding and dissociation of the large ribosome subunits from Rhodopseudomonas spheroides N.C.I.B. 8253 and Escherichia coli M.R.E. 600.

作者信息

Robinson A, Sykes J

出版信息

Biochem J. 1973 Aug;133(4):739-47. doi: 10.1042/bj1330739.

Abstract
  1. The behaviour of the large ribosomal subunit from Rhodopseudomonas spheroides (45S) has been compared with the 50S ribosome from Escherichia coli M.R.E. 600 (and E. coli M.R.E. 162) during unfolding by removal of Mg(2+) and detachment of ribosomal proteins by high univalent cation concentrations. The extent to which these processes are reversible with these ribosomes has also been examined. 2. The R. spheroides 45S ribosome unfolds relatively slowly but then gives rise directly to two ribonucleoprotein particles (16.6S and 13.7S); the former contains the intact primary structure of the 16.25S rRNA species and the latter the 15.00S rRNA species of the original ribosome. No detectable protein loss occurs during unfolding. The E. coli ribosome unfolds via a series of discrete intermediates to a single, unfolded ribonucleoprotein unit (19.1S) containing the 23S rRNA and all the protein of the original ribosome. 3. The two unfolded R. spheroides ribonucleoproteins did not recombine when the original conditions were restored but each simply assumed a more compact configuration. Similar treatments reversed the unfolding of the E. coli 50S ribosomes; replacement of Mg(2+) caused the refolding of the initial products of unfolding and in the presence of Ni(2+) the completely unfolded species (19.1S) again sedimented at the same rate as the original ribosomes (44S). 4. Ribosomal proteins (25%) were dissociated from R. spheroides 45S ribosomes by dialysis against a solution with a Na(+)/Mg(2+) ratio of 250:1. During this process two core particles were formed (21.2S and 14.2S) and the primary structures of the two original rRNA species were conserved. This dissociation was not reversed. With E. coli 50S approximately 15% of the original ribosomal protein was dissociated, a single 37.6S core particle was formed, the 23S rRNA remained intact and the ribosomal proteins would reassociate with the core particle to give a 50S ribosome. 5. The ribonuclease activities in R. spheroides 45S and E. coli M.R.E. 600 and E. coli M.R.E. 162 50S ribosomes are compared. 6. The observations concerning unfolding and dissociation are consistent with previous reports showing the unusual rRNA complement of the mature R. spheroides 45S ribosome and show the dependence of these events upon the rRNA and the importance of protein-protein interactions in the structure of the R. spheroides ribosome.
摘要
  1. 通过去除Mg(2+)以及利用高单价阳离子浓度使核糖体蛋白脱离,对球形红假单胞菌的大核糖体亚基(45S)与大肠杆菌M.R.E. 600(以及大肠杆菌M.R.E. 162)的50S核糖体在展开过程中的行为进行了比较。还研究了这些过程对这些核糖体而言在何种程度上是可逆的。2. 球形红假单胞菌45S核糖体展开相对较慢,但随后直接产生两个核糖核蛋白颗粒(16.6S和13.7S);前者包含原始核糖体16.25S rRNA物种的完整一级结构,后者包含15.00S rRNA物种。展开过程中未发生可检测到的蛋白质损失。大肠杆菌核糖体通过一系列离散中间体展开为一个单一的、展开的核糖核蛋白单元(19.1S),其包含23S rRNA和原始核糖体的所有蛋白质。3. 当恢复原始条件时,两个展开的球形红假单胞菌核糖核蛋白并未重新结合,而是各自简单地呈现出更紧密的构象。类似处理可逆转大肠杆菌核糖体50S的展开;Mg(2+)的替代导致展开初始产物的重新折叠,并且在Ni(2+)存在下,完全展开的物种(19.1S)再次以与原始核糖体(44S)相同的速率沉降。4. 通过对Na(+)/Mg(2+)比率为250:1的溶液进行透析,从球形红假单胞菌45S核糖体中解离出25%的核糖体蛋白。在此过程中形成了两个核心颗粒(21.2S和14.2S),并且两个原始rRNA物种的一级结构得以保留。这种解离是不可逆的。对于大肠杆菌50S核糖体,约15%的原始核糖体蛋白被解离,形成了一个单一的37.6S核心颗粒,23S rRNA保持完整,并且核糖体蛋白会与核心颗粒重新结合形成50S核糖体。5. 比较了球形红假单胞菌45S以及大肠杆菌M.R.E. 600和大肠杆菌M.R.E. 162 50S核糖体中的核糖核酸酶活性。6. 关于展开和解离的观察结果与先前的报告一致,这些报告显示了成熟球形红假单胞菌4SS核糖体不寻常的rRNA组成,并表明这些事件对rRNA的依赖性以及蛋白质 - 蛋白质相互作用在球形红假单胞菌核糖体结构中的重要性。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9abe/1177764/a63bc249b06c/biochemj00604-0146-a.jpg

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