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胎生蛋白1保守的B3结构域具有协同DNA结合活性。

The conserved B3 domain of VIVIPAROUS1 has a cooperative DNA binding activity.

作者信息

Suzuki M, Kao C Y, McCarty D R

机构信息

Horticultural Sciences Department, University of Florida, Gainesville 32605, USA.

出版信息

Plant Cell. 1997 May;9(5):799-807. doi: 10.1105/tpc.9.5.799.

Abstract

The biochemical activities that underlie the genetically defined activator and repressor functions of the VIVIPAROUS1 (VP1) protein have resisted in vitro analysis. Here, we show that a glutathione S-transferase (GST) fusion protein, including only the highly conserved B3 domain of VP1, has a highly cooperative, sequence-specific DNA binding activity. GST fusion proteins that include larger regions of the VP1 protein have very low activity, indicating that removal of the flanking protein sequences is necessary to elicit DNA binding in vitro. DNA competition and DNase I footprinting analyses show that B3 binds specifically to the Sph element involved in VP1 activation of the C1 gene, whereas binding to the G-box-type VP1-responsive element is of low affinity and is nonspecific. Footprint analysis of the C1 promoter revealed that sequences flanking the core TCCATGCAT motif of Sph also contribute to the recognition of the Sph element in its native context. The salient features of the in vitro GST-B3 DNA interaction are in good agreement with the protein and DNA sequence requirements defined by the functional analyses of VP1 and VP1-responsive elements in maize cells.

摘要

构成胎生蛋白1(VP1)基因定义的激活和抑制功能基础的生化活性一直难以进行体外分析。在此,我们表明,一种仅包含VP1高度保守B3结构域的谷胱甘肽S-转移酶(GST)融合蛋白具有高度协同的序列特异性DNA结合活性。包含VP1蛋白更大区域的GST融合蛋白活性非常低,这表明去除侧翼蛋白序列对于在体外引发DNA结合是必要的。DNA竞争和DNase I足迹分析表明,B3特异性结合参与C1基因VP1激活的Sph元件,而与G-box型VP1反应元件的结合亲和力低且是非特异性的。对C1启动子的足迹分析表明,Sph核心TCCATGCAT基序侧翼的序列在其天然环境中也有助于Sph元件的识别。体外GST-B3与DNA相互作用的显著特征与玉米细胞中VP1和VP1反应元件功能分析所确定的蛋白质和DNA序列要求高度一致。

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