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Mutational analysis of the VirG protein, a transcriptional activator of Agrobacterium tumefaciens virulence genes.

机译:VirG蛋白的突变分析,VirG蛋白是根癌农杆菌毒力基因的转录激活因子。

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摘要

The VirG protein of Agrobacterium tumefaciens is required in conjunction with the VirA protein for transcriptional activation of the virulence (vir) genes in response to plant phenolic compounds. These proteins are members of a family of two component regulatory systems. vir genes are activated via a cascade of phosphorylation reactions involving a specific aspartic acid residue of the VirG protein. We have conducted a mutational analysis of the VirG protein. By mutating conserved and nonconserved aspartic acid residues in the N-terminal domain, we demonstrated that two of three conserved aspartic acid residues located in two different regions are important for the phosphorylation of VirG by VirA phosphate. A third conserved N-terminal region was also shown to be critical for the biological function of VirG as a transcriptional activator. The identification of phosphorylatable but biologically inactive mutated VirG proteins suggests that not only phosphorylation but also a conformational change is necessary for its activity. We further demonstrated that phosphorylation is not required for sequence-specific binding to a vir gene regulatory sequence (vir box) and that the C-terminal domain is sufficient for DNA binding. The data support the model of a two-domain structure for the VirG protein and demonstrate that the sequence homologies to other two-component regulatory systems reflect both functional and structural homologies.
机译:根癌土壤杆菌的VirG蛋白需要与VirA蛋白结合,才能响应植物酚类化合物对毒力(vir)基因进行转录激活。这些蛋白质是两个成分调节系统家族的成员。 vir基因通过涉及VirG蛋白特定天冬氨酸残基的一系列磷酸化反应激活。我们已经对VirG蛋白进行了突变分析。通过突变N末端域中的保守和非保守天冬氨酸残基,我们证明了位于两个不同区域的三个保守天冬氨酸残基中的两个对于VirG磷酸被VirG磷酸化很重要。还显示了第三个保守的N端区域对于VirG作为转录激活因子的生物学功能至关重要。可磷酸化但无生物学活性的突变VirG蛋白的鉴定表明,不仅磷酸化而且其构象变化对于其活性也是必需的。我们进一步证明,磷酸化不是序列特异性结合到vir基因调控序列(vir box)所必需的,并且C末端结构域足以与DNA结合。数据支持VirG蛋白的两结构域结构模型,并证明与其他两组分调节系统的序列同源性反映了功能和结构同源性。

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