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Zinc-Induced Formation of a Coactivator Complex Containing the Zinc-Sensing Transcription Factor MTF-1, p300/CBP, and Sp1 ▿

机译:锌诱导的包含锌敏感转录因子MTF-1,p300 / CBP和Sp1的助活化剂复合物的形成

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摘要

Herein, the mechanisms of transactivation of gene expression by mouse metal response element-binding transcription factor 1 (MTF-1) were investigated. Evidence obtained from coimmunoprecipitation assays revealed that exposure of the cells to zinc resulted in the rapid formation of a multiprotein complex containing MTF-1, the histone acetyltransferase p300/CBP, and the transcription factor Sp1. Down-regulation of endogenous p300 expression by small interfering RNA transfection significantly decreased zinc-dependent metallothionein I (MT-I) gene transcription without altering induction of zinc transporter 1 (ZnT1). MTF-1 independently facilitated the recruitment of Sp1 and p300 to the protein complex in response to zinc. Mutagenesis demonstrated that the acidic domain, one of three transactivation domains of MTF-1, is required for recruitment of p300 but not Sp1 as well as for zinc-dependent activation of MT-I gene transcription. Furthermore, mutation of leucine residues (L→A) within a nuclear exclusion signal in the MTF-1 acidic domain impaired recruitment of p300 and zinc-dependent activation of the MT-I gene. Nuclear magnetic resonance characterization of an isolated protein fragment corresponding to the MTF-1 acidic region demonstrated that this region is largely unstructured in the presence and absence of excess stoichiometric amounts of zinc. This suggests that the mechanism by which MTF-1 recruits p300 to this complex involves extrinsic-zinc-dependent steps. These studies reveal a novel zinc-responsive mechanism requiring an acidic region of MTF-1 that functions as a nuclear exclusion signal as well as participating in formation of a coactivator complex essential for transactivation of MT-I gene expression.
机译:在本文中,研究了由小鼠金属反应元件结合转录因子1(MTF-1)进行基因表达反式激活的机制。从免疫共沉淀试验获得的证据表明,细胞暴露于锌导致快速形成包含MTF-1,组蛋白乙酰转移酶p300 / CBP和转录因子Sp1的多蛋白复合物。小干扰RNA转染下调内源性p300表达可显着降低锌依赖性金属硫蛋白I(MT-I)基因转录,而不会改变锌转运蛋白1(ZnT1)的诱导。 MTF-1独立地促进Sp1和p300响应锌而向蛋白质复合物募集。诱变表明,酸性结构域(MTF-1的三个反式激活结构域之一)是募集p300而不是Sp1以及锌依赖的MT-1基因转录激活所必需的。此外,MTF-1酸性域中核排斥信号中亮氨酸残基的突变(L→A)削弱了p300的募集和MT-1基因的锌依赖性激活。分离的对应于MTF-1酸性区域的蛋白质片段的核磁共振表征表明,在存在和不存在过量化学计量的锌的情况下,该区域在很大程度上是无结构的。这表明MTF-1将p300募集到该复合物中的机制涉及外在锌依赖性步骤。这些研究揭示了新颖的锌响应机制,该机制需要MTF-1的酸性区域起核排斥信号的作用,并参与MT-1基因表达反式激活所必需的共激活复合物的形成。

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