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通过包括二维电泳程序在内的电泳研究核糖核蛋白颗粒蛋白质部分的组成对颗粒纯化程度的依赖性。

Dependence of the composition of the protein moiety of nuclear ribonucleoprotein particles on the extent of particle purification as studied by electrophoresis including a two-dimensional procedure.

作者信息

Patel N T, Holoubek V

出版信息

Biochim Biophys Acta. 1977 Feb 16;474(4):524-35. doi: 10.1016/0005-2787(77)90073-9.

Abstract

Extraction with 0.1 M NaCl in 0.01 M Tris-HCl buffer, pH 8.0 releases from liver nuclei 30-40-S ribonucleoprotein particles containing newly synthesized RNA. Separation of the protein moiety of these particles by acid-urea gel electrophoresis depends on the concentration of beta-mercaptoethanol in the buffer used for the solubilization of the particles. At low concentration or with short time of solubilization, only a polypeptide chain with apparent molecular weight 38 000 penetrates into the gel and can be detected by electrophoresis. By introduction of two-dimensional polyacrylamine gel electrophoresis, we succeeded to separate the protein moiety of these particles into a core group of 4 major and 6 minor polypeptides with molecular weights ranging from 38 000 to 50 000 and a second group of 19 polypeptides ranging in molecular weight from 50 000 to 120 000. The composition of the protein moiety of these particles is dependent on the extent of purification. Polypeptides with molecular weight below 50 000 represent 55% of the total protein of particles purified only by centrifugation through a 15-30% sucrose gradient. If the particles were first purified by gel filtration through Bio-Gel A-50m followed by centrifugation in sucrose gradient, the low molecular weight proteins represent 80% of all the proteins of the particles. The purification removed selectively the minor high molecular weight polypeptides without resulting in any extensive release of the four major polypeptides with molecular weight below 50 000 which form a stable core particle. By repeated purification it is possible to strip the particles of the high molecular weight polypeptides even further. An increase in the NaCl concentration of the extraction buffer to 0.35 M will extract additional 30-40-S particles associated with a newly synthesized RNA from the cell nucleus. These particles contain the same polypeptides as particles extracted at lower salt concentration. Extraction with 0.1 M and 0.35 M NaCl at pH 8.0 removed from the nucleus approximately 55% of all RNA labeled in 30 min after intraperitoneal injection of [3H] orotic acid to the rats.

摘要

用含0.01 M Tris-HCl缓冲液(pH 8.0)的0.1 M NaCl从肝细胞核中提取出含有新合成RNA的30 - 40S核糖核蛋白颗粒。通过酸性尿素凝胶电泳分离这些颗粒的蛋白质部分取决于用于溶解颗粒的缓冲液中β-巯基乙醇的浓度。在低浓度或短时间溶解时,只有一条表观分子量为38000的多肽链能进入凝胶并可通过电泳检测到。通过引入二维聚丙烯酰胺凝胶电泳,我们成功地将这些颗粒的蛋白质部分分离为一组核心的4种主要和6种次要多肽,分子量范围为38000至50000,以及第二组19种多肽,分子量范围为50000至120000。这些颗粒的蛋白质部分组成取决于纯化程度。分子量低于50000的多肽占仅通过15 - 30%蔗糖梯度离心纯化的颗粒总蛋白的55%。如果颗粒首先通过Bio-Gel A - 50m凝胶过滤纯化,然后在蔗糖梯度中离心,低分子量蛋白质占颗粒所有蛋白质的80%。纯化选择性地去除了次要的高分子量多肽,而不会导致形成稳定核心颗粒的分子量低于50000的四种主要多肽大量释放。通过反复纯化,可以进一步去除颗粒中的高分子量多肽。将提取缓冲液中的NaCl浓度增加到0.35 M会从细胞核中提取出与新合成RNA相关的额外30 - 40S颗粒。这些颗粒含有与在较低盐浓度下提取的颗粒相同的多肽。在给大鼠腹腔注射[³H]乳清酸30分钟后,用pH 8.0的0.1 M和0.35 M NaCl从细胞核中去除了约55%的所有标记RNA。

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