首页> 美国卫生研究院文献>Biochemical Journal >Reassembly of the peptidyltransferase centre of larger subparticles of rabbit reticulocyte ribosomes from a core-particle and split-protein fraction.
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Reassembly of the peptidyltransferase centre of larger subparticles of rabbit reticulocyte ribosomes from a core-particle and split-protein fraction.

机译:从核心颗粒和分裂蛋白部分重组兔网状细胞核糖体较大亚颗粒的肽基转移酶中心。

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摘要

We report the reconstruction, from a core-particle and split-protein fraction, of the larger subribosomal particle of rabbit reticulocytes. The reassembled particle was active in polyphenylalanine synthesis and in the puromycin reaction. The core-particles and split-protein fractions were obtained by treatment of the larger subparticle with salt solutions containing NH4+ and Mg2+ in the molar ratio 40:1 over the range 2.25-2.75 M-NH4Cl/56-69mM-MgCl2 at 0 degrees C. This treatment led to the loss of about eight proteins (approx. 17% of the protein moiety), which were found wholly or largely in the split-protein fraction as shown by two-dimensional gel electrophoresis. The core particle retained 5S rRNA and had much decreased (no more than 10% of control) ability to function in the puromycin reaction or in poly (U)-directed polyphenylalanine synthesis. Activity was recovered when the recombined core-particle and split-protein fractions were dialysed overnight at 4 degrees C against 0.3M-NH4Cl/15mM-MgCl2/1mM-dithiothreitol/15% (v/v) glycerol/20mM-Tris/HCl, pH 7.6, and then heated for 1 h at 37 degreesEES C. The recovery was 40-80% of the original activity. Raising the concentration of MgCL2 to 300 mM in 2.5 M-NH4CL led to the removal of seven rather than eight proteins, and the core particle remained active in the puromycin reaction. We infer that the protein retained by raising the concentration of Mg2+ is an essential component of the peptidyltransferase centre of the ribosome.
机译:我们报道了从兔核心网状细胞的较大核糖体下颗粒的核心颗粒和分裂蛋白部分的重建。重新组装的颗粒在聚苯丙氨酸合成和嘌呤霉素反应中具有活性。通过在0摄氏度下用摩尔比为40:1的NH4 +和Mg2 +的盐溶液处理较大的亚颗粒,在2.25-2.75 M-NH4Cl / 56-69mM-MgCl2的范围内获得核心颗粒和裂解蛋白级分该处理导致大约八种蛋白质的损失(约占蛋白质部分的17%),如二维凝胶电泳所示,这些蛋白质全部或大部分存在于分裂的蛋白质部分中。核心颗粒保留了5S rRNA,并且在嘌呤霉素反应或在聚(U)导向的聚苯丙氨酸合成中起作用的能力大大降低(不超过对照的10%)。当将重组的核心颗粒和裂解蛋白级分在4°C下针对0.3M-NH4Cl / 15mM-MgCl2 / 1mM-二硫苏糖醇/ 15%(v / v)甘油/ 20mM-Tris / HCl透析过夜后,活性得以恢复。 pH 7.6,然后在37摄氏度下加热1小时。回收率为原始活性的40-80%。在2.5 M-NH4CL中将MgCL2的浓度提高到300 mM导致去除了7种而不是8种蛋白,并且核心颗粒在嘌呤霉素反应中仍然保持活性。我们推断通过提高Mg2 +的浓度而保留的蛋白质是核糖体肽基转移酶中心的重要组成部分。

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