首页> 外文期刊>Journal of molecular recognition: JMR >Extremely stable high molecular mass soluble multiprotein complex from eggs of sea urchin Strongylocentrotus intermedius Strongylocentrotus intermedius with phosphatase activity
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Extremely stable high molecular mass soluble multiprotein complex from eggs of sea urchin Strongylocentrotus intermedius Strongylocentrotus intermedius with phosphatase activity

机译:来自海胆蛋白卵泡蛋白蛋蛋白的卵子素骨蛋白肌蛋白含有磷酸酶活性的极其稳定的高分子质量可溶性多发素复合物

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Abstract It was proposed that most biological processes are performed by different protein complexes. In contrast to individual proteins and enzymes, their complexes usually have other biological functions, and their formation may be important system process for the expansion of diversity and biological functions of different molecules. Identification and characterization of embryonic components including proteins and their multiprotein complexes seem to be very important for an understanding of embryo function. We have isolated and analyzed for the first time a very stable multiprotein complex (SPC; approximately 1100?kDa) from the soluble fraction of extracts of the sea urchin embryos. By fast protein liquid chromatography (FPLC) gel filtration the SPC was well separated from other extract proteins. Stable multiprotein complex is stable in different drastic conditions but dissociates moderately in the presence of 8M urea?+?1.0M NaCl. According to sodium dodecyl sulfate polyacrylamide gel electrophoresis data, this complex contains many major, moderate and minor proteins with molecular masses from 10 to 95?kDa. The SPC was destroyed by 8M urea or SDS, and its components were separated using thin layer chromatography, ion‐exchange chromatography, gel filtration, and reverse phase chromatography. Using matrix‐assisted laser desorption/ionization mass spectrometry of partially dissociated SPC, it was shown that the complex contains not only proteins (10‐95?kDa) but also few dozens of peptides with molecular masses from 2 to 9.5?kDa. Short peptides form very strong complexes, which at the treatment of SPC with urea or SDS can be partially break down into smaller complexes having different peptide compositions. Reverse phase chromatography of these complexes after all type of abovementioned chromatographies led to detection from 6 to 11 distinct peaks corresponding to new complexes containing up to a few dozens of peptides. The SPCs possess alkaline phosphatase activity. Progress in the study of embryos protein complexes can help to understand their biological functions.
机译:摘要提出了大多数生物过程由不同的蛋白质复合物进行。与单个蛋白质和酶相比,它们的配合物通常具有其他生物学功能,并且它们的形成可能是扩展不同分子的多样性和生物学功能的重要系统过程。胚胎成分的鉴定和表征包括蛋白质及其多蛋白络合物似乎对胚胎功能的理解非常重要。我们已经孤立并分析了第一次非常稳定的多碳素复合物(SPC;约1100 kDa),从海胆胚胎的溶于溶液中的可溶性部分。通过快速蛋白质液相色谱(FPLC)凝胶过滤,SPC与其他提取物蛋白分离得很好。稳定的多丙烯蛋白复合物在不同的剧烈条件下是稳定的,但在8M尿素存在下适度解离?1.0m NaCl。根据十二烷基硫酸钠聚丙烯酰胺凝胶电泳数据,该复合物含有许多主要,中等和次要的蛋白质,其中分子量为10至95μlΩkDa。 SPC被8M尿素或SDS破坏,其组分使用薄层色谱,离子交换色谱,凝胶过滤和反相色谱分离。使用部分离解的SPC的基质辅助激光解吸/电离质谱法,显示该复合物不仅含有蛋白质(10-95〜KDA),还含有来自2至9.5〜9.5 kDa的分子量的几十个肽。短肽形成非常强的复合物,其在处理SPC时用尿素或SDS可以部分地分解成具有不同肽组合物的较小络合物。在所有类型的上述色谱后,这些复合物的反相色谱导致从对应于含有高达几十个肽的新配合物检测6至11个不同的峰。 SPC具有碱性磷酸酶活性。胚胎蛋白质复合物研究的进展可以有助于理解其生物学功能。

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