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大鼠垂体切除导致40S核糖体亚基的氨酰转移核糖核酸结合能力下降。

A decreased aminoacyl-transfer-ribonucleic acid-binding capacity of 40S ribosomal subunits resulting from hypophysectomy of the rat.

作者信息

Barden N, Korner A

出版信息

Biochem J. 1972 Apr;127(2):411-7. doi: 10.1042/bj1270411.

Abstract

A technique that permitted the reversible dissociation of rat liver ribosomes was used to study the difference in protein-synthetic activity between liver ribosomes of normal and hypophysectomized rats. Ribosomal subunits of sedimentation coefficients 38S and 58S were produced from ferritin-free ribosomes by treatment with 0.8m-KCl at 30 degrees C. These recombined to give 76S monomers, which were as active as untreated ribosomes in incorporating phenylalanine in the presence of poly(U). Subunits from normal and hypophysectomized rats were recombined in all possible combinations and the ability of the hybrid ribosomes to catalyse polyphenylalanine synthesis was measured. The results show that the defect in ribosomes of hypophysectomized rats lies only in the small ribosomal subunit. The 40S but not the 60S subunit of rat liver ribosomes bound poly(U). The only requirement for the reaction was Mg(2+), the optimum concentration of which was 5mm. No apparent difference was seen between the poly(U)-binding abilities of 40S ribosomal subunits from normal or hypophysectomized rats. Phenylalanyl-tRNA was bound by 40S ribosomal subunits in the presence of poly(U) by either enzymic or non-enzymic reactions. Non-enzymic binding required a Mg(2+) concentration in excess of 5mm and increased linearly with increasing Mg(2+) concentrations up to 20mm. At a Mg(2+) concentration of 5mm, GTP and either a 40-70%-saturated-(NH(4))(2)SO(4) fraction of pH5.2 supernatant or partially purified aminotransferase I was necessary for binding of aminoacyl-tRNA. Hypophysectomy of rats resulted in a decreased binding of aminoacyl-tRNA by 40S ribosomal subunits.

摘要

采用一种能使大鼠肝脏核糖体发生可逆解离的技术,来研究正常大鼠和垂体切除大鼠肝脏核糖体之间蛋白质合成活性的差异。在30℃下用0.8m - KCl处理无铁蛋白核糖体,可产生沉降系数为38S和58S的核糖体亚基。这些亚基重新组合形成76S单体,在有聚(U)存在的情况下,其掺入苯丙氨酸的活性与未处理的核糖体相同。将正常大鼠和垂体切除大鼠的亚基进行所有可能的组合,并测定杂种核糖体催化聚苯丙氨酸合成的能力。结果表明,垂体切除大鼠核糖体的缺陷仅在于小核糖体亚基。大鼠肝脏核糖体的40S亚基而非60S亚基能结合聚(U)。该反应唯一的需求是Mg(2+),其最佳浓度为5mm。正常大鼠或垂体切除大鼠的40S核糖体亚基的聚(U)结合能力未见明显差异。在聚(U)存在的情况下,苯丙氨酰 - tRNA通过酶促或非酶促反应与40S核糖体亚基结合。非酶促结合需要Mg(2+)浓度超过5mm,并且随着Mg(2+)浓度增加至20mm呈线性增加。在Mg(2+)浓度为5mm时,GTP以及pH5.2上清液中40 - 70%饱和度的硫酸铵部分或部分纯化 的氨基转移酶I是氨基酰 - tRNA结合所必需的。大鼠垂体切除导致40S核糖体亚基对氨基酰 - tRNA的结合减少。

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