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Phosphorylation of nuclear and DNA-binding proteins in proliferating and quiescent mammalian cells

机译:增殖和静止的哺乳动物细胞中核和DNA结合蛋白的磷酸化

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pThe dependence of cell proliferation on nuclear protein phosphorylation was studied with exponential-phase and stationary-phase cultures of Chinese-hamster ovary cells. Nuclear proteins were fractionated, according to their DNA-binding affinities, by using sequential extractions of isolated nuclei with increasing concentrations of NaCl. When viable whole cells were labelled with H332PO4, phosphorylation of nuclear proteins was found to be lower in quiescent cells than in proliferating cells. Phosphorylation of nuclear proteins soluble in 0.30M-NaCl (less than 50% of these proteins bind to DNA) was greater than for those proteins soluble in higher salt concentrations (80-100% of these proteins bind to DNA). Cyclic AMP enhanced the phosphorylation of nuclear proteins soluble in 0.3 m-NaCl by 40-50%, and this stimulation was independent of cell growth. Cyclic AMP also increased the phosphorylation of nuclear proteins soluble in 0.6M-NaCl and 2.0M-NaCl by 40-50% in exponential-phase cultures, but not in stationary-phase cultures. Several examples of specific phosphorylation in response to cyclic AMP were observed, including a 35000-mol.wt. protein in the 0.30 M-NaCl-soluble fraction and several proteins larger than 100000 molecular weight within this fraction. A major peptide of molecular weight approx. 31000 extracted with 0.6M-NaCl was also phosphorylated. Its phosphorylation was independent of cyclic AMP in exponential-phase cultures, and it was not phosphorylated in plateau-phase cells. These changes in cell-growth-dependent phosphorylation occurred in the absence of any apparent qualitative changes in the nuclear protein molecular-weight distributions. These data demonstrate that (1) phosphorylation of nuclear proteins is dependent on the culture9s proliferative status, (2) both cyclic AMP-dependent and cyclic AMP-independent specific phosphorylation occurs, and (3) the cyclic AMP-dependent growth-independent phosphorylation that occurs does not appear to be a modification of DNA-binding proteins, whereas the cyclic AMP-dependent growth-dependent phosphorylation does involve modification of DNA binding proteins./p
机译:>用中国仓鼠卵巢细胞的指数期和静止期培养研究了细胞增殖对核蛋白磷酸化的依赖性。核蛋白根据其DNA结合亲和力,通过使用逐渐增加的NaCl浓度的分离核的顺序提取进行分离。当用H332PO4标记有活力的全细胞时,发现静息细胞中核蛋白的磷酸化程度低于增殖细胞。溶于0.30M-NaCl的核蛋白的磷酸化程度(少于50%的蛋白质与DNA结合)要大于那些溶于较高盐浓度的蛋白质的蛋白(80-100%的蛋白质与DNA结合)。环状AMP使可溶于0.3 m-NaCl的核蛋白磷酸化增强40-50%,并且这种刺激与细胞生长无关。环状AMP在指数相培养中可溶于0.6M-NaCl和2.0M-NaCl的核蛋白的磷酸化也可增加40-50%,而在固定相培养中则不会。观察到响应于环状AMP的特异性磷酸化的几个实例,包括35000-mol.wt。溶于0.30 M-NaCl的级分中的蛋白质,以及该级分中分子量大于100000的几种蛋白质。分子量约为1的主要肽。用0.6M-NaCl萃取的31000也被磷酸化。它的磷酸化与指数相培养物中的环状AMP无关,并且在平台期细胞中不被磷酸化。这些细胞生长依赖性磷酸化的变化发生在核蛋白分子量分布没有任何明显的质变的情况下。这些数据表明(1)核蛋白的磷酸化取决于培养物的增殖状态;(2)环状AMP依赖性和环状AMP非依赖性的特异性磷酸化都发生,并且(3)环状AMP依赖性非生长依赖性的磷酸化似乎不是DNA结合蛋白的修饰,而环AMP依赖的生长依赖性磷酸化确实涉及DNA结合蛋白的修饰。

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