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蛋白激酶A是盘基网柄菌中孢子壁基因转录的正向调节因子。

Protein kinase A is a positive regulator of spore coat gene transcription in Dictyostelium.

作者信息

Hopper N A, Sanders G M, Fosnaugh K L, Williams J G, Loomis W F

机构信息

MRC Laboratory For Molecular Cell Biology, University College London, UK.

出版信息

Differentiation. 1995 Feb;58(3):183-8. doi: 10.1046/j.1432-0436.1995.5830183.x.

Abstract

The cotA, cotB, and cotC genes encode the major spore coat proteins of Dictyostelium. All three cot genes are coordinately expressed as aggregation is nearing completion. Induction and maintenance of their expression is dependent upon the presence of extracellular cAMP. We show that expression of a dominant inhibitor of the cAMP dependent protein kinase (PKA) in prespore cells greatly reduces the transcription rates of the cotB and cotC genes. All three cot genes contain, in their upstream regulatory regions, short sequence elements that have a high content of cytosine and adenosine residues. These CA-rich sequences are essential for optimal cot gene transcription. We show that expression of the dominant PKA inhibitor results in a greatly reduced level of the binding activity that recognizes the CA-rich sequences upstream of the cotB gene. Thus PKA acts, either directly or indirectly, to control expression of the cot genes and it may do so by modulating the activity of a DNA binding protein. However, we find that mutant cells where PKA is constitutively active still require exogenous cAMP for optimal cot gene expression in dissociated cells, suggesting that a separate, PKA-independent, signalling pathway is also involved in the regulation of cot gene expression by extracellular cAMP.

摘要

cotA、cotB和cotC基因编码盘基网柄菌的主要孢子外壁蛋白。在聚集接近完成时,所有这三个cot基因都是协同表达的。它们表达的诱导和维持取决于细胞外cAMP的存在。我们发现,在孢子前体细胞中表达一种cAMP依赖性蛋白激酶(PKA)的显性抑制剂会大大降低cotB和cotC基因的转录速率。所有这三个cot基因在其上游调控区域都含有短序列元件,这些元件中胞嘧啶和腺苷残基的含量很高。这些富含CA的序列对于cot基因的最佳转录至关重要。我们发现,显性PKA抑制剂的表达导致识别cotB基因上游富含CA序列的结合活性水平大大降低。因此,PKA直接或间接地作用于控制cot基因的表达,并且它可能通过调节一种DNA结合蛋白的活性来实现这一点。然而,我们发现PKA组成型激活的突变细胞在解离细胞中仍需要外源性cAMP来实现最佳的cot基因表达,这表明一条独立于PKA的信号通路也参与了细胞外cAMP对cot基因表达的调控。

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