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盘基网柄菌中cAMP及其类似物对两种形式糖原磷酸化酶的调控

Regulation of the two forms of glycogen phosphorylase by cAMP and its analogs in Dictyostelium discoideum.

作者信息

Brickey D A, Naranan V, Sucic J F, Rutherford C L

机构信息

Department of Biology, Virginia Tech University, Blacksburg 24061.

出版信息

Mol Cell Biochem. 1990 Sep 3;97(1):17-33. doi: 10.1007/BF00231698.

Abstract

We have recently reported the existence of two forms of glycogen phosphorylase (1,4-alpha-D-glucan: orthophosphate-alpha-glucosyltransferase; EC 2.4.1.1) in Dictyostelium discoideum. During development the activity of the glycogen phosphorylase b form decreased as the activity of the a form increased. The total phosphorylase activity remained constant. The physical and kinetic properties of the Dictyostelium enzyme were similar to those of the mammalian enzyme. In mammals, cAMP regulates the conversion of the two forms by a cAMP dependent protein kinase (cAMPdPK). We report here that if cAMP is added to a single cell suspension, the Dictyostelium phosphorylase activity becomes independent of 5'AMP and a 104 kd peptide appears. We also show the effect of several cAMP analogs on the phosphorylase activity in these single-cell suspensions. The cAMP analogs were selected on the basis of their affinities for the membrane-bound cAMP receptor or the cytoplasmic cAMPdPK. We found that relatively low levels, 100 microM, of cAMP or 2'd-cAMP added to aggregation-competent cells in shaking culture caused a loss of phosphorylase b activity and the appearance of phosphorylase a activity. The analog, 2'd-cAMP, has a high affinity for the cAMP receptor but a low affinity for the cAMPdPK. Two other analogs, Bt2-cAMP and 8-Br-cAMP, which have low affinities for the cAMP receptor but high affinities for the cAMPdPK, required high levels (500 microM) for 'b' to 'a' conversion. cDNAs to three cAMP-regulated genes--PL3, D11, and D3--were used as controls in the above experiments. In order to determine if intracellular levels of cAMP were involved in the regulation of phosphorylase activity, both the phosphorylase and the PL3, D11 and D3 mRNA levels were examined in cells suspended in a glucose/albumin mixture--a medium in which adenylate cyclase is inhibited. Under these conditions, neither gene regulation nor a change in the phosphorylase b to a activity occurred in response to added extra cellular cAMP. The results suggest that an intracellular increase in cAMP is involved in the regulation of the two forms of glycogen phosphorylase in Dictyostelium.

摘要

我们最近报道了盘基网柄菌中存在两种形式的糖原磷酸化酶(1,4-α-D-葡聚糖:正磷酸-α-葡糖基转移酶;EC 2.4.1.1)。在发育过程中,糖原磷酸化酶b形式的活性随着a形式活性的增加而降低。总磷酸化酶活性保持恒定。盘基网柄菌酶的物理和动力学性质与哺乳动物酶相似。在哺乳动物中,cAMP通过cAMP依赖性蛋白激酶(cAMPdPK)调节两种形式的转化。我们在此报告,如果将cAMP添加到单细胞悬液中,盘基网柄菌的磷酸化酶活性将变得不依赖于5'AMP,并且会出现一种104 kd的肽。我们还展示了几种cAMP类似物对这些单细胞悬液中磷酸化酶活性的影响。这些cAMP类似物是根据它们对膜结合的cAMP受体或细胞质cAMPdPK的亲和力来选择的。我们发现,在振荡培养中向具有聚集能力的细胞中添加相对低水平(100 microM)的cAMP或2'd-cAMP会导致磷酸化酶b活性丧失和磷酸化酶a活性出现。类似物2'd-cAMP对cAMP受体具有高亲和力,但对cAMPdPK具有低亲和力。另外两种对cAMP受体具有低亲和力但对cAMPdPK具有高亲和力的类似物Bt2-cAMP和8-Br-cAMP,需要高水平(500 microM)才能实现从“b”到“a”的转化。上述实验使用了三个cAMP调节基因PL3、D11和D3的cDNA作为对照。为了确定细胞内cAMP水平是否参与磷酸化酶活性的调节,在悬浮于葡萄糖/白蛋白混合物(一种抑制腺苷酸环化酶的培养基)中的细胞中检测了磷酸化酶以及PL3、D11和D3的mRNA水平。在这些条件下,添加细胞外cAMP后,既没有发生基因调节,磷酸化酶b到a的活性也没有变化。结果表明,细胞内cAMP的增加参与了盘基网柄菌中两种形式糖原磷酸化酶的调节。

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