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一种与起始转运核糖核酸结合并使其脱酰基的蛋白质因子的纯化及某些特性

Purification and some properties of a protein factor binding and deacylating initiator transfer ribonucleic acid.

作者信息

Pohlreich P, Kríz O, Tuhácková Z, Dusek Z, Hradec J

出版信息

Biochem J. 1979 Feb 1;177(2):707-19. doi: 10.1042/bj1770707.

Abstract
  1. A protein factor promoting the binding of initiator tRNA to the 40S ribosomal subunit was purified to homogeneity (more than 2500-fold) from rat liver cytosol. It has a mol.wt. of 265000 and is composed of four subunits of identical molecular weight. 2. This factor directs the binding of methionyl-tRNA(fMet) and to a lesser extent also of N-acetylphenylalanyl-tRNA, but not of methionyl-tRNA(Met) or phenylalanyl-tRNA, to the smaller ribosomal subunit at high concentrations of GTP (8-10mm) with an optimum at pH4.0. As evidenced by sucrose-density-gradient centrifugation, initiator tRNA becomes bound to the 40S subunit or to 80S ribosomes. 3. A deacylase activity specific for methionyl-tRNA(fMet) is associated with the pure factor. The factor significantly stimulates the translation of natural message in systems containing polyribosomes and both purified peptide-elongation factors. 4. The factor binds initiator tRNA or GTP to form unstable binary complexes and forms a ternary complex with methionyl-tRNA(fMet) and GTP. This complex is relatively stable. 5. In the absence of any cofactors the factor forms a stable complex with 40S and 80S ribosomes. This preformed ribosomal complex binds efficiently initiator tRNA at pH7.5 and low concentrations of GTP (1-2mm). The ternary complex of the factor with methionyl-tRNA(fMet) and GTP may be liberated from this ribosomal complex. 6. A protein factor capable of promoting the binding and simultaneously the deacylation of initiator tRNA may apparently have a regulatory function in physiological gene translation by removing an excess of methionyl-tRNA(fMet) not required for translation.
摘要
  1. 一种促进起始tRNA与40S核糖体亚基结合的蛋白质因子从大鼠肝脏细胞质中纯化至同质状态(超过2500倍)。它的分子量为265000,由四个分子量相同的亚基组成。2. 该因子在高浓度GTP(8 - 10mM)且pH4.0为最佳条件下,可引导甲硫氨酰 - tRNA(fMet)结合到较小的核糖体亚基上,对N - 乙酰苯丙氨酰 - tRNA的结合作用较小,但不引导甲硫氨酰 - tRNA(Met)或苯丙氨酰 - tRNA结合。蔗糖密度梯度离心证明,起始tRNA会与40S亚基或80S核糖体结合。3. 该纯因子具有对甲硫氨酰 - tRNA(fMet)特异的脱酰酶活性。在含有多核糖体和两种纯化的肽链延伸因子的系统中,该因子能显著刺激天然信使的翻译。4. 该因子与起始tRNA或GTP结合形成不稳定的二元复合物,并与甲硫氨酰 - tRNA(fMet)和GTP形成三元复合物。这种复合物相对稳定。5. 在没有任何辅助因子的情况下,该因子与40S和80S核糖体形成稳定复合物。这种预先形成的核糖体复合物在pH7.5和低浓度GTP(1 - 2mM)时能有效结合起始tRNA。该因子与甲硫氨酰 - tRNA(fMet)和GTP的三元复合物可从这种核糖体复合物中释放出来。6. 一种能够促进起始tRNA结合并同时使其脱酰的蛋白质因子,显然可能通过去除翻译不需要的过量甲硫氨酰 - tRNA(fMet),在生理基因翻译中发挥调节功能。

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