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发育过程中大鼠大脑皮层钙调蛋白依赖性蛋白激酶活性的亚细胞分布

Subcellular distribution of a calmodulin-dependent protein kinase activity in rat cerebral cortex during development.

作者信息

Weinberger R P, Rostas J A

出版信息

Brain Res. 1986 Sep;394(1):37-50. doi: 10.1016/0165-3806(86)90080-5.

Abstract

The postnatal development of calmodulin-stimulated phosphorylation of endogenous proteins, in particular the autophosphorylated subunits of the calmodulin-stimulated protein kinase II, were investigated in subcellular fractions of rat cerebral cortex. The major subunit had a mol. wt. of 53,000 Da (designated 50 kDa) and the minor one a mol. wt. of 63,000 Da (designated 60 kDa). The 50-kDa subunit was found to be the only significant phosphoprotein in each fraction and throughout development at its molecular weight. However, the 60-kDa subunit was found to comigrate with other phosphoproteins that accounted for up to 15% of the radioactivity at this molecular weight and which differed between the fractions. 50-kDa autophosphorylation was found to be 3-fold greater in cytoplasmic fractions at day 10 and by adults was evenly distributed between membrane and cytoplasmic fractions. A similar pattern was also found for the total calmodulin-stimulated phosphorylation. Changes in autophosphorylation activity of the 50-kDa subunit were found to represent changes in kinase activity rather than alterations in phosphatase activity. In the membrane, this change was shown to be due to changes in the amount of enzyme. Although in the adult autophosphorylation activity is evenly distributed between membrane and soluble fractions, when differences in phosphatase activity and lack of autophosphorylation activity of the majority of post-synaptic density-associated kinase is taken into account, it is clear that the vast majority of the enzyme is membrane-bound. Phosphorylation of endogenous substrates paralleled the development of 50-kDa subunit autophosphorylation, most of which occurred between day 14 and day 30, a period which follows the most rapid phase of synaptogenesis. This pattern was different from that of the phosphorylation of myelin basic protein and two substrates of the calcium-phospholipid-dependent protein kinase. There was also a change in the ratio of autophosphorylation activity of the 50-kDa and 60-kDa subunits during development which appears to be due to a change in the amount of the subunits themselves. This ratio was the same in all fractions at any one age. We suggest that this change is due to the existence of at least two developmentally regulated isoenzymes in the cortex.

摘要

在大鼠大脑皮层的亚细胞组分中,研究了钙调蛋白刺激的内源性蛋白质磷酸化的产后发育情况,特别是钙调蛋白刺激的蛋白激酶II的自磷酸化亚基。主要亚基的分子量为53,000 Da(命名为50 kDa),次要亚基的分子量为63,000 Da(命名为60 kDa)。发现50-kDa亚基是每个组分中唯一显著的磷蛋白,并且在其分子量的整个发育过程中都是如此。然而,发现60-kDa亚基与其他磷蛋白共迁移,这些磷蛋白在该分子量下占放射性的15%,并且在不同组分之间有所不同。发现在第10天时,50-kDa自磷酸化在细胞质组分中比其他组分高3倍,到成年时,其在膜和细胞质组分中均匀分布。总钙调蛋白刺激的磷酸化也发现了类似的模式。发现50-kDa亚基自磷酸化活性的变化代表激酶活性的变化,而不是磷酸酶活性的改变。在膜中,这种变化表明是由于酶量的变化。虽然在成年时自磷酸化活性在膜和可溶性组分中均匀分布,但考虑到磷酸酶活性的差异以及大多数突触后致密物相关激酶缺乏自磷酸化活性,很明显绝大多数酶是膜结合的。内源性底物的磷酸化与50-kDa亚基自磷酸化的发育平行,其中大部分发生在第14天至第30天之间,这一时期紧随突触发生的最快阶段之后。这种模式与髓鞘碱性蛋白和钙磷脂依赖性蛋白激酶的两种底物的磷酸化模式不同。在发育过程中,50-kDa和60-kDa亚基自磷酸化活性的比率也发生了变化,这似乎是由于亚基本身数量的变化。在任何一个年龄,所有组分中的这个比率都是相同的。我们认为这种变化是由于皮层中至少存在两种发育调控的同工酶。

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