Paulson J R, Taylor S S
J Biol Chem. 1982 Jun 10;257(11):6064-72.
We have developed a simple in vitro system for studying phosphorylation in isolated HeLa metaphase chromosomes which utilizes the endogenous protein kinase and phosphoprotein phosphatase activities in the chromosomes. Because the isolated chromosomes retain the specificity of phosphorylation seen in vivo, this system offers unique possibilities for studying the properties and regulation of the kinase and phosphatase by adding exogenous substances and observing their effects. It should also be useful for studying the sites of phosphorylation, since proteins can be more easily labeled to high specific activity with 32P in this system than in vivo. The pattern of proteins phosphorylated in isolated metaphase chromosomes appears to be nearly identical with the pattern found in vivo. Among the histones (H) only H1 and H3 are phosphorylated, but several nonhistone proteins, including high mobility group (HMG) 14, are also phosphorylated. Since HMG 14 has been implicated as a structural protein of actively transcribing chromatin, our results suggest that phosphorylation of chromatin proteins may be involved in the shutoff of transcription during mitosis. Tryptic peptide maps and analysis of the phosphorylated amino acids indicate that H1A, H1B, HMG 14, and H3 are phosphorylated at the same sites in vitro in metaphase chromosomes as in mitotic cells in vivo. The major site of phosphorylation of histone H3, both in vivo and in vitro, has been identified as serine 10. HMG 14 is phosphorylated both at serine and threonine residues.
我们开发了一种简单的体外系统,用于研究分离的HeLa中期染色体中的磷酸化作用,该系统利用了染色体中的内源性蛋白激酶和磷蛋白磷酸酶活性。由于分离的染色体保留了体内所见磷酸化的特异性,因此通过添加外源物质并观察其效果,该系统为研究激酶和磷酸酶的特性及调节提供了独特的可能性。它对于研究磷酸化位点也应该是有用的,因为在这个系统中蛋白质比在体内更容易用³²P标记到高比活性。在分离的中期染色体中磷酸化的蛋白质模式似乎与体内发现的模式几乎相同。在组蛋白(H)中,只有H1和H3被磷酸化,但包括高迁移率族(HMG)14在内的几种非组蛋白也被磷酸化。由于HMG 14被认为是活跃转录染色质的一种结构蛋白,我们的结果表明染色质蛋白的磷酸化可能参与有丝分裂期间转录的关闭。胰蛋白酶肽图和磷酸化氨基酸分析表明,在体外中期染色体中,H1A、H1B、HMG 14和H3与体内有丝分裂细胞中一样在相同位点被磷酸化。组蛋白H3在体内和体外的主要磷酸化位点已被确定为丝氨酸10。HMG 14在丝氨酸和苏氨酸残基处均被磷酸化。