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真核生物中核糖核酸合成的调控。2. 蛋白质合成对酵母细胞核及全细胞依赖DNA的RNA聚合酶活性的影响。

Control of ribonucleic acid synthesis in eukaryotes. 2. The effect of protein synthesis on the activities of nuclear and total DNA-dependent RNA polymerase in yeast.

作者信息

Gross K J, Pogo A O

出版信息

Biochemistry. 1976 May 18;15(10):2070-2081. doi: 10.1021/bi00655a007.

Abstract

A thermosensitive conditional yeast mutant (ts-187) which suppresses protein synthesis at the nonpermissive temperature (36 degrees C) also suppresses RNA synthesis. The effect of temperature on the mutant is similar to the addition of cycloheximide--it inhibits the incorporation of labeled precursors into RNA in both whole cells and isolated nuclei. The effect of temperature is selective for the RNA polymerases bound to the nuclear template but not for the total RNA polymerases. Thus, the specific activities and total amounts of RNA polymerase species extracted and assayed with exogenous DNA template are similar in the ts-187 cultured at 23 degrees C and at 36 degrees C. On the contrary, the nuclear polymerases, i.e., RNA synthesis in isolated nuclei, are dramatically inhibited in cells cultured at 36 degrees C. When amino acid starved ts-187 cells are transferred to 36 degrees C, release from the inhibtion of RNA synthesis is observed. As with the addition of cycloheximide, this relaxation is observed in cells but not in isolated nuclei. The parental strain, A364A, which responds by stimulating instead of inhibiting protein synthesis when the temperature is increased to 36 degrees C, also exhibits an inhibition in the incorporation of labeled precursor into RNA as well as reducing RNA synthesis in isolated nuclei. However, these are transitory inhibitions and afterward there is reinitiation of both processes. Reinitiation of RNA synthesis in isolated nuclei is similar to the relaxed phenomenon and it is called "nuclear relaxation". This relaxation can only be obtained if protein synthesis is not inhibited; however, cellular relaxation occurs in the absence of protein synthesis. The repression of the nuclear RNA polymerase activities which starvation and inhibition of protein synthesis produce appears to be due to a restriction in the nuclear DNA template. This notion is supported by the fact that a net diminution of these nuclear enzyme activities is observed in spheroplasts cultured under starving conditions. Studies of the four main ribonucleotide pools indicate that stringency and inhibition of protein synthesis (ts-187 cultured at 36 degrees C) produce an increase in UTP and CTP pools. This is consistent with the concept that stringency and inhibition of protein synthesis affect the rate of utilization rather than the synthesis of these ribonucleotide residues. In the A364A and ts-187 yeast strains, the conversion of uracil but not of uridine into the UTP and CTP is inhibited when there is inhibition of the nuclear RNA polymerases. This indicates that the uracil phosphoribosyltransferase but not the uridine-cytidine kinase is allosterically inhibited by UTP and CTP in yeast. The feedback inhibition in the metabolic pathway of the base explains why relaxation cannot be detected when uracil instead of uridine is used as the labeled RNA precursor.

摘要

一种热敏条件性酵母突变体(ts - 187)在非允许温度(36摄氏度)下会抑制蛋白质合成,同时也会抑制RNA合成。温度对该突变体的影响类似于添加环己酰亚胺——它会抑制标记前体掺入全细胞和分离细胞核中的RNA。温度的影响对结合到核模板上的RNA聚合酶具有选择性,而对总RNA聚合酶则无选择性。因此,用外源DNA模板提取和测定的RNA聚合酶种类的比活性和总量,在23摄氏度和36摄氏度培养的ts - 187中相似。相反,在36摄氏度培养的细胞中,核聚合酶,即分离细胞核中的RNA合成,会受到显著抑制。当氨基酸饥饿的ts - 187细胞转移到36摄氏度时,会观察到RNA合成抑制的解除。与添加环己酰亚胺的情况一样,这种解除在完整细胞中可观察到,而在分离细胞核中则未观察到。亲本菌株A364A在温度升至36摄氏度时通过刺激而非抑制蛋白质合成做出反应,它在标记前体掺入RNA方面也表现出抑制,同时分离细胞核中的RNA合成减少。然而,这些都是短暂的抑制,随后这两个过程都会重新启动。分离细胞核中RNA合成的重新启动类似于这种解除现象,被称为“核解除”。只有在蛋白质合成未被抑制的情况下才能获得这种解除;然而,细胞解除在没有蛋白质合成的情况下也会发生。饥饿和蛋白质合成抑制所产生的核RNA聚合酶活性的抑制似乎是由于核DNA模板受到限制。在饥饿条件下培养的原生质球中观察到这些核酶活性的净减少这一事实支持了这一观点。对四个主要核糖核苷酸池的研究表明,严格条件和蛋白质合成抑制(36摄氏度培养的ts - 187)会导致UTP和CTP池增加。这与严格条件和蛋白质合成抑制影响这些核糖核苷酸残基的利用速率而非合成速率的概念一致。在A364A和ts - 187酵母菌株中,当核RNA聚合酶受到抑制时,尿嘧啶而非尿苷向UTP和CTP的转化受到抑制。这表明在酵母中尿嘧啶磷酸核糖基转移酶而非尿苷 - 胞苷激酶受到UTP和CTP的变构抑制。碱基代谢途径中的反馈抑制解释了为什么当使用尿嘧啶而非尿苷作为标记RNA前体时无法检测到解除现象。

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