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COMPOSITION OF CELLULAR MEMBRANES IN THE PANCREAS OF THE GUINEA PIG : IV. Polyacrylamide Gel Electrophoresis and Amino Acid Composition of Membrane Proteins

机译:几内亚猪胰腺细胞膜的组成:IV。聚丙烯酰胺凝胶电泳和膜蛋白的氨基酸组成

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摘要

Two methods of polyacrylamide gel electrophoresis (the acid method of Eytan and Ohad and the Na dodecylsulfate (SDS) disc method of Maizel) have been used for analyzing the proteins of gel fractions isolated from the guinea pig pancreatic exocrine cells and in particular the proteins bound to the membranes involved in the synthesis, intracellular transport, and discharge of secretory enzymes: rough (RM) and smooth microsome (SM) membranes, zymogen granule (ZG) membranes, and plasma membranes (PM). Since in the two systems the electrophoretic mobility of proteins depends on different factors (size, shape, and net charge of molecules in the acid system; size only in the SDS system) a deeper insight into the protein composition of the fractions could be obtained. The gel patterns of RM, SM, and ZG membranes turned out to be accounted for mainly by segregated secretory enzymes (in rough microsomes also by ribosome proteins) and thus were found to share most of the bands. In contrast, with highly purified membrane fractions different patterns were obtained: RM and SM membrane proteins turn out to contain a large number of different proteins with molecular weights varying between ∼150,000 and 15,000 daltons. The pattern of ZG membranes was greatly different in the two systems: only two bands were separated by the acid method and as many as 23 by the SDS method. PM gave a rather complex pattern in either system. Both ZG membranes and PM were found to contain a large proportion of low molecular weight proteins. Nothing appears in common between the proteins of SM membranes (primarily of Golgi origin) and those of ZG membranes, while the latter and PM exhibit a certain degree of similarity. By amino acid analysis we found only slight differences: relative to the other fractions: RM membranes were higher in basic amino acids and ZG membranes contained a larger amount of methionine. Taken together with recent data on lipid composition and enzyme activities of the same fractions, these results indicate that the membranes of the pancreatic exocrine cells are chemically and functionally distinct, and hence do not mix randomly with one another during the transport of secretory products.
机译:聚丙烯酰胺凝胶电泳的两种方法(Eytan和Ohad的酸法和Maizel的十二烷基硫酸钠(SDS)盘法)已用于分析从豚鼠胰腺外分泌细胞分离的凝胶级分的蛋白质,特别是结合的蛋白质。涉及分泌酶的合成,细胞内运输和释放的膜:粗糙(RM)和光滑微粒体(SM)膜,酶原颗粒(ZG)膜和质膜(PM)。由于在这两个系统中,蛋白质的电泳迁移率取决于不同的因素(酸系统中分子的大小,形状和净电荷;仅SDS系统中的大小),因此可以更深入地了解级分的蛋白质组成。事实证明,RM,SM和ZG膜的凝胶模式主要是由分离的分泌酶(在粗糙的微粒体中也由核糖体蛋白)引起的,因此发现它们共享大多数谱带。相反,通过高度纯化的膜级分,可以得到不同的模式:RM和SM膜蛋白原来包含大量不同的蛋白,分子量在约150,000到15,000道尔顿之间。在两个系统中,ZG膜的模式有很大的不同:酸法仅分离了两个谱带,而SDS法则分离了多达23条谱带。在这两个系统中,PM都给出了一个相当复杂的模式。发现ZG膜和PM都含有大量的低分子量蛋白质。在SM膜(主要是高尔基起源)和ZG膜之间没有什么共同点,而后者和PM表现出一定程度的相似性。通过氨基酸分析,我们发现只有细微的差异:相对于其他部分:RM膜的碱性氨基酸含量更高,而ZG膜含有大量的蛋氨酸。结合有关相同馏分的脂质组成和酶活性的最新数据,这些结果表明,胰腺外分泌细胞的膜在化学和功能上是不同的,因此在分泌产物的运输过程中不会彼此随机混合。

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  • 作者

    Meldolesi, Jacopo; Cova, Dario;

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  • 年度 1972
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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