首页> 美国卫生研究院文献>Biochemical Journal >Studies of the decrease of tyrosine-O-sulphated proteins in Rous sarcoma-virus-transformed rat embryo fibroblasts line 3Y1. Examination of the sulphate activation and tyrosyl-protein sulphotransferase systems.
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Studies of the decrease of tyrosine-O-sulphated proteins in Rous sarcoma-virus-transformed rat embryo fibroblasts line 3Y1. Examination of the sulphate activation and tyrosyl-protein sulphotransferase systems.

机译:在Rous肉瘤病毒转化的大鼠胚胎成纤维细胞(系3Y1)中酪氨酸-O硫酸化蛋白减少的研究。硫酸盐活化和酪氨酰蛋白质磺基转移酶系统的检查。

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摘要

The sulphate activation and tyrosyl-protein sulphotransferase systems in normal 3Y1 rat embryo fibroblasts and the same cells transformed by Schmidt Ruppin subgroup-A-Rous sarcoma virus (SRA-3Y1) were examined. Employing metabolic [35S]sulphate-labelling followed by PEI (polyethyleneimine)-cellulose thin-layer chromatography of the labelled cell lysates, it was found that the steady-state level of 'active' sulphate, adenosine 3'-phosphate 5'-phosphosulphate, was drastically lower in SRA-3Y1 cells compared with their normal counterparts. When the sulphate activating enzymes were tested, it appeared that the activities in 3Y1 homogenates were 2-2.5 times greater than those in SRA-3Y1 homogenates. An endogenous sulphation assay for tyrosyl-protein sulphotransferase revealed that activities in 3Y1 and SRA-3Y1 homogenates were comparable. Nearly identical patterns were observed with both sets of cells when [35S]sulphated proteins generated in the endogenous assay were separated by two-dimensional gel electrophoresis. It therefore seems that the tyrosyl-protein sulphotransferase(s) are unimpaired in SRA-3Y1 cells. While the lower (approx. 8 times) sulphate uptake remains the major cause for the decrease of tyrosine-O-sulphated proteins in SRA-3Y1 cells [Liu & Lipmann, (1984) Proc. Natl. Acad. Sci. U.S.A. 81, 3695-3698], the 2-2.5-fold lower sulphate activating enzyme activities also contribute to some extent to the difference between the SRA-3Y1 and 3Y1 cells.
机译:检查了正常3Y1大鼠胚胎成纤维细胞和施密特Ruppin亚组-A-Rous肉瘤病毒(SRA-3Y1)转化的相同细胞中的硫酸盐活化和酪氨酰蛋白质磺基转移酶系统。利用代谢的[35S]硫酸盐标记,然后对标记的细胞裂解物进行PEI(聚乙烯亚胺)-纤维素薄层色谱分析,发现“活性”硫酸盐,腺苷3'-磷酸5'-磷酸的稳态水平与正常对应物相比,SRA-3Y1细胞中的TNFα大大降低。当测试硫酸盐活化酶时,似乎3Y1匀浆中的活性是SRA-3Y1匀浆中的2-2.5倍。酪氨酸蛋白磺基转移酶的内源硫酸化分析表明,在3Y1和SRA-3Y1匀浆中的活性相当。当通过二维凝胶电泳分离内源测定中产生的[35S]硫酸化蛋白时,两组细胞都观察到几乎相同的模式。因此,似乎在SRA-3Y1细胞中酪氨酸蛋白磺基转移酶没有受损。虽然较低的硫酸盐摄取量(约8倍)仍然是SRA-3Y1细胞中酪氨酸-O硫酸化蛋白减少的主要原因[Liu&Lipmann,(1984)Proc.Natl.Acad.Sci.USA,88:5873-5877。 Natl。学院科学[U.S.A. 81,3695-3698]中,硫酸盐活化酶活性降低了2-2.5倍,在一定程度上也导致了SRA-3Y1和3Y1细胞之间的差异。

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