Studies on the Thiol Components of Isolated Nuclei

M. Gronow
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引用次数: 2

Abstract

The thiol components of the nonhistone proteins prepared from isolated nuclei from rat liver, regenerating liver and hepatoma 223 cells have been investigated after reaction with radio labelled N-ethylmaleimide and 5-5’-dithiobis-(2-nitrobenzoic acid) (DTNB). The labelled adducts formed were examined by isoelectric focusing analysis in polyacrylamide gel and the distribution of the radiolabels within sliced portions of the gels determined. In the case of the 14C labelled NEM adduct the label was found to be spread amongst numerous protein components within the gel however, in the case of the 35S labelled DTNB adducts, only a small proportion of the label was found in the protein material which was retained in the acidic isoelectric point (pI) region of the gel. The bulk of the 35S labelled adduct (56% - 60%) was found to have migrated into the anode solution (10 mM phosphoric acid). This could be adsorbed onto a hydrophobic resin (XAD2) resin and eluted with methanol. Gel filtration chromatographic analysis of this adduct material on BioGel P2, (exclusion limit 1500 daltons) showed low molecular weight components to be present. Slightly different patterns were obtained for these nuclei, each containing several 35S components with molecular weights greater than the Ellman reagent itself. These 35S labelled thiol components did not contain any protein, peptide or amino acid components indicating strongly that a novel species of thiols could be present in these nuclei bound within the non-histone protein matrices.
离核硫醇组分的研究
用放射性标记的n -乙基马来酰亚胺和5-5′-二硫代比斯-(2-硝基苯甲酸)(DTNB)对从大鼠肝脏、再生肝脏和肝癌223细胞分离的细胞核制备的非组蛋白的硫醇成分进行了研究。用等电聚焦法对聚丙烯酰胺凝胶中形成的标记加合物进行了检测,并测定了凝胶切片内放射性标记物的分布。在14C标记的NEM加合物的情况下,标签被发现分布在凝胶内的许多蛋白质成分中,然而,在35S标记的DTNB加合物的情况下,只有一小部分标签被发现在保留在凝胶的酸性等电点(pI)区域的蛋白质材料中。大部分35S标记的加合物(56% - 60%)被发现迁移到阳极溶液(10mm磷酸)中。它可以吸附在疏水性树脂(XAD2)树脂上并用甲醇洗脱。在BioGel P2(排除限1500道尔顿)上对该加合物进行凝胶过滤色谱分析,发现存在低分子量组分。这些原子核的模式略有不同,每个原子核都含有几个分子量大于Ellman试剂本身的35S组分。这些35S标记的硫醇成分不含任何蛋白质、肽或氨基酸成分,这强烈表明一种新的硫醇可能存在于这些非组蛋白基质内的细胞核中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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