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Cooperation of the transcriptional coactivators CBP and p300 with Stat6.

机译:转录共激活因子CBP和p300与Stat6的协同作用。

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摘要

Interleukin-4 (IL-4) functions as a critical regulatory cytokine of the immune response. A major effect of IL-4 is the induction of specific gene expression mediated by activation of a latent transcription factor, Stat6. To understand the mechanism by which Stat6 induces gene transcription, the effects of two histone acetylase coactivators, CREB binding protein (CBP) and p300, were evaluated. Both CBP and p300 were found to cooperate with Stat6 for induction of Stat6-dependent transcription. This cooperation does not appear to be due to acetylation of Stat6. The adenoviral E1A oncoprotein, known to bind CBP and p300, can inhibit the ability of CBP and p300 to function as coactivators of Stat6. The cooperative effect of CBP and p300 depends on the presence of a carboxyl-terminal region of Stat6. Stat6 molecules lacking this region behave as negative interfering molecules for Stat6-dependent transcription. Point mutations within this region also affect transcription by Stat6 in response to IL-4, identifying a motif that appears to be required for transcription, possibly through functional cooperation with CBP/p300.
机译:白介素4(IL-4)起到免疫反应的关键调节细胞因子的作用。 IL-4的主要作用是诱导潜在转录因子Stat6激活介导的特定基因表达。为了了解Stat6诱导基因转录的机制,我们评估了两个组蛋白乙酰化酶共激活剂CREB结合蛋白(CBP)和p300的作用。发现CBP和p300都与Stat6协同诱导Stat6依赖性转录。这种合作似乎不是由于Stat6的乙酰化。已知结合CBP和p300的腺病毒E1A癌蛋白可以抑制CBP和p300充当Stat6的共激活因子的能力。 CBP和p300的协同作用取决于Stat6羧基末端区域的存在。缺少该区域的Stat6分子充当Stat6依赖性转录的负性干扰分子。此区域内的点突变也影响Stat6对IL-4的转录,从而可能通过与CBP / p300的功能合作识别了转录所需的基序。

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