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CREB-327的环磷酸腺苷反应性转录激活涉及相互依赖的磷酸化亚结构域。

Cyclic-AMP-responsive transcriptional activation of CREB-327 involves interdependent phosphorylated subdomains.

作者信息

Lee C Q, Yun Y D, Hoeffler J P, Habener J F

机构信息

Laboratory of Molecular Endocrinology, Massachusetts General Hospital, Boston.

出版信息

EMBO J. 1990 Dec;9(13):4455-65. doi: 10.1002/j.1460-2075.1990.tb07896.x.

Abstract

Cyclic AMP-regulated gene expression is mediated by specific phosphoproteins (CREBs) which bind to cAMP-responsive elements of gene promoters. By analyzing the transactivation activities and phosphorylations in vivo of deletion and point mutated chimeric fusion proteins of the placental CREB-327, in which the DNA-binding domain is replaced by the heterologous binding-domain of the yeast transcription factor GAL4, we localized the cAMP-responsive and phosphorylated domain to a minimal-essential sequence module of 46 amino acids (residues 92-137). This serine-rich, multiply-phosphorylated sequence consists of at least three interdependent subdomains required for transcriptional activation. Although phosphorylation of serine-119 by cyclic AMP-dependent protein kinase A is necessary for transcriptional activation, such activation requires both a phosphorylated heptadecapeptide domain located ten residues amino terminal to the serine-119 and an eleven-residue domain carboxyl terminal to the serine-119. Deletion of these two domains does not impair phosphorylation of serine-119. Further, deletion of the carboxyl-terminal domain does not alter phosphorylation of the heptadecapeptide domain. We propose that akin to the phosphorylation-dependent activation of enzymes, the transcriptional transactivation functions of CREB-327 involve a phosphorylation-dependent allosteric conformational mechanism.

摘要

环磷酸腺苷(cAMP)调节的基因表达由特定的磷蛋白(CREBs)介导,这些磷蛋白与基因启动子的cAMP反应元件结合。通过分析胎盘CREB - 327的缺失和点突变嵌合融合蛋白在体内的反式激活活性和磷酸化情况(其中DNA结合结构域被酵母转录因子GAL4的异源结合结构域取代),我们将cAMP反应和磷酸化结构域定位到一个由46个氨基酸组成的最小必需序列模块(第92 - 137位氨基酸残基)。这个富含丝氨酸、多次磷酸化的序列由转录激活所需的至少三个相互依赖的亚结构域组成。虽然环磷酸腺苷依赖性蛋白激酶A对丝氨酸119的磷酸化对于转录激活是必需的,但这种激活需要位于丝氨酸119氨基末端十个残基处的一个磷酸化十七肽结构域以及位于丝氨酸119羧基末端的一个十一残基结构域。删除这两个结构域不会损害丝氨酸119的磷酸化。此外,删除羧基末端结构域不会改变十七肽结构域的磷酸化。我们提出,类似于酶的磷酸化依赖性激活,CREB - 327的转录反式激活功能涉及一种磷酸化依赖性变构构象机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66c6/552238/a95656173ffa/emboj00240-0247-a.jpg

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