Chesterton C J, Coupar B E, Butterworth P H, Green M H
Eur J Biochem. 1975 Sep 1;57(1):79-83. doi: 10.1111/j.1432-1033.1975.tb02278.x.
In many eucaryotic systems protein synthesis is coupled to ribosomal RNA synthesis such that shut-down of the former causes inhibition of the latter. We have investigated this stringency phenomenon in HeLa cells. The protein synthesis inhibitors cycloheximide and puromycin cause inactivation of both processes but valine starvation totally inhibits only the processing of 45-S RNA. DNA-dependent RNA polymerases from A, B and C (or I, II and III respectively) were extracted, separated partially by DEAE-cellulose chromatography and their activity levels determined. These do not decrease significantly during inhibition of protein synthesis. To find out whether or not form A is bound to its template under these conditions, proteins were removed from chromatin with the detergent sarkosyl. This does not affect bound RNA polymerase. Inhibition of protein synthesis caused up to 50% reduction in endogenous alpha-amanitin-insensitive chromatin-RNA-synthesising activity. This reduced level of activity was not affected by sarkosyl treatment. Levels in normal cells were stimulated. This result indicates that the form A RNA polymerase is not bound to its template when protein synthesis is inhibited.
在许多真核生物系统中,蛋白质合成与核糖体RNA合成相偶联,以至于前者的关闭会导致后者受到抑制。我们已经在HeLa细胞中研究了这种严格现象。蛋白质合成抑制剂环己酰亚胺和嘌呤霉素会使这两个过程失活,但缬氨酸饥饿仅完全抑制45-S RNA的加工。分别从A、B和C(或分别为I、II和III)中提取DNA依赖性RNA聚合酶,通过DEAE-纤维素色谱法进行部分分离,并测定其活性水平。在蛋白质合成受抑制期间,这些活性水平不会显著降低。为了弄清楚在这些条件下A形式是否与其模板结合,用去污剂十二烷基肌氨酸钠从染色质中去除蛋白质。这不会影响结合的RNA聚合酶。蛋白质合成的抑制导致内源性α-鹅膏蕈碱不敏感的染色质-RNA合成活性降低多达50%。这种降低的活性水平不受十二烷基肌氨酸钠处理的影响。正常细胞中的水平受到刺激。这一结果表明,当蛋白质合成受到抑制时,A形式的RNA聚合酶不会与其模板结合。