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几种脊椎动物核糖体蛋白的分子量分布

Molecular weight distribution of ribosomal proteins from several vertebrate species.

作者信息

Martini O H, Gould H J

出版信息

Mol Gen Genet. 1976 Dec 31;142(4):317-31. doi: 10.1007/BF00271255.

Abstract

Two-dimensional polyacrylamide gel electrophoresis of proteins from the separated ribosomal subunits of rabbit reticulocytes, rabbit liver, mouse liver, rat liver, chicken liver, and toad liver was performed using the "pH 4.5/SDS" system previously described (Martini and Gould, 1975), with internal standards to measure the molecular weight distributions. With few exceptions, the patterns were remarkably similar, indicating a high degree of conservation during evolution of both net charge (largely determining mobility in the first dimension) and size (determining mobility in the second dimension). The aggregate mass (sum of molecular weights) of both small and large subunit proteins, about 0.65 X 10(6) and 0.95 X 10(6) daltons respectively, were invariant. These figures are significantly smaller than the hydrodynamically determined mass of protein in the subunits. The implications of this discrepancy, which is opposite that found in the prokaryotes, is discussed.

摘要

使用先前描述的“pH 4.5/SDS”系统(Martini和Gould,1975年),对来自兔网织红细胞、兔肝脏、小鼠肝脏、大鼠肝脏、鸡肝脏和蟾蜍肝脏的分离核糖体亚基中的蛋白质进行二维聚丙烯酰胺凝胶电泳,并使用内标来测量分子量分布。除少数例外,这些模式非常相似,表明在进化过程中净电荷(在很大程度上决定一维迁移率)和大小(决定二维迁移率)都高度保守。小亚基和大亚基蛋白质的总质量(分子量总和)分别约为0.65×10⁶和0.95×10⁶道尔顿,是不变的。这些数字明显小于通过流体动力学测定的亚基中蛋白质的质量。讨论了这种与原核生物中发现的情况相反的差异的含义。

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