肿瘤农杆菌组氨酸蛋白激酶 VirA 信号感应区的遗传分析。

A Toyoda-Yamamoto, N Shimoda, Y Machida
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引用次数: 26

摘要

肿瘤农杆菌的膜结合传感蛋白激酶 VirA 可检测植物酚类物质,这些物质可诱导形成冠瘿瘤所必需的 vir 基因的表达。VirA 还能对特定的单糖做出反应,从而增强 vir 的表达。这些糖类由 VirA 的外质结构域感知,该结构域包括与化学感受器 Trg 同源的区域,酚类物质被认为是由细胞质链接结构域的一部分检测到的,而第二个跨膜结构域(TM2)据报道是非必需的。为了确定 VirA 对信号感应至关重要的区域,我们将碱基替换和缺失突变引入了不同农杆菌菌株 VirA 蛋白各自结构域中保守的编码区域,并考察了这些突变对 vir 诱导和致瘤性的影响。结果表明,围质体结构域中的Trg同源区对于糖类增强vir基因的表达并不重要。TM2结构域中的大多数突变也不能影响糖类对vir基因表达的增强作用,并降低了vir基因的诱导水平,但与细胞质连接体相邻的TM2结构域中的一个突变则取消了vir基因的诱导作用。在连接子结构域中,酚类物质对 vir 诱导所必需的位点分散在整个区域。我们认为,由连接子结构域和至少部分 TM2 形成的拓扑特征可能是激活膜锚定 VirA 蛋白的关键。用两种不同的 VirA 突变体进行的互补分析表明,体内 VirA 分子之间会发生分子间磷酸化,VirA 二聚体中的两个完整的包膜区域是糖类增强 vir 诱导的必要条件。
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Genetic analysis of the signal-sensing region of the histidine protein kinase VirA of Agrobacterium tumefaciens.

The membrane-bound sensor protein kinase VirA of Agrobacterium tumefaciens detects plant phenolic substances, which induce expression of vir genes that are essential for the formation of the crown gall tumor. VirA also responds to specific monosaccharides, which enhance vir expression. These sugars are sensed by the periplasmic domain of VirA that includes the region homologous to the chemoreceptor Trg, and the phenolics are thought to be detected by a part of the cytoplasmic linker domain, while the second transmembrane domain (TM2) is reported to be nonessential. To define regions of VirA that are essential for signal sensing, we introduced base-substitution and deletion mutations into coding regions that are conserved among the respective domains of VirA proteins from various Agrobacterium strains, and examined the effects of these mutations on vir induction and tumorigenicity. The results show that the Trg-homologous region in the periplasmic domain is not essential for the enhancement of vir gene expression by sugars. Most mutations in the TM2 domain also failed to influence enhancement by sugars and reduced the level of vir induction, but a mutation in the TM2 region adjacent to the cytoplasmic linker abolished induction of the vir genes. In the linker domain, sites essential for vir induction by phenolics were scattered over the entire region. We propose that a topological feature formed by the linker domain and at least part of the TM2 may be crucial for activation of a membrane-anchored VirA protein. Complementation analysis with two different VirA mutants suggested that intermolecular phosphorylation between VirA molecules occurs in vivo, and that two intact periplasmic regions in a VirA dimer are required for the enhancement of vir induction by sugars.

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