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人生长激素(hGH)启动子和基因座控制区的Pit-1结合位点之间的单个碱基差异决定了不同的Pit-1构象和功能。

A single base difference between Pit-1 binding sites at the hGH promoter and locus control region specifies distinct Pit-1 conformations and functions.

作者信息

Shewchuk Brian M, Ho Yugong, Liebhaber Stephen A, Cooke Nancy E

机构信息

University of Pennsylvania School of Medicine, 415 Curie Blvd., Philadelphia, PA 19103, USA.

出版信息

Mol Cell Biol. 2006 Sep;26(17):6535-46. doi: 10.1128/MCB.00267-06.

Abstract

Activation of the human growth hormone (hGH-N) gene in pituitary somatotropes is mediated by a locus control region (LCR). This LCR is composed of DNase I-hypersensitive sites (HS) located -14.5 kb to -32 kb relative to the hGH-N promoter. HSI, at -14.5 kb, is the dominant determinant of hGH-N expression and is essential for establishment of a 32-kb domain of histone acetylation that encompasses the active hGH locus. This activity is conferred by three binding sites for the POU domain transcription factor Pit-1. These Pit-1 elements are sufficient to activate hGH-N expression in the mouse pituitary. In contrast, Pit-1 sites at the hGH-N promoter are consistently unable to mediate similar activity. In the present study, we demonstrate that the functional difference between the promoter-proximal and the HSI Pit-1 binding sites can be attributed in part to a single base difference. This base affects the conformation of the Pit-1/DNA complex, and reciprocal exchange of the divergent bases between the two sets of Pit-1 elements results in a partial reversal of their transgenic activities. These data support a model in which the Pit-1 binding sites in the hGH LCR allosterically program the bound Pit-1 complex for chromatin activating functions.

摘要

垂体生长激素细胞中人生长激素(hGH-N)基因的激活由一个位点控制区(LCR)介导。该LCR由相对于hGH-N启动子位于-14.5 kb至-32 kb处的DNA酶I超敏位点(HS)组成。位于-14.5 kb处的HSI是hGH-N表达的主要决定因素,对于建立一个包含活跃hGH基因座的32 kb组蛋白乙酰化结构域至关重要。这种活性由POU结构域转录因子Pit-1的三个结合位点赋予。这些Pit-1元件足以在小鼠垂体中激活hGH-N的表达。相比之下,hGH-N启动子处的Pit-1位点始终无法介导类似的活性。在本研究中,我们证明启动子近端和HSI的Pit-1结合位点之间的功能差异部分可归因于单个碱基差异。该碱基影响Pit-1/DNA复合物的构象,两组Pit-1元件之间不同碱基的相互交换导致其转基因活性部分逆转。这些数据支持一个模型,即hGH LCR中的Pit-1结合位点通过变构作用使结合的Pit-1复合物具备染色质激活功能。

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