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The Agrobacterium tumefaciens virB4 gene product is an essential virulence protein requiring an intact nucleoside triphosphate-binding domain.

机译:根癌农杆菌virB4基因产物是必需的毒力蛋白,需要完整的三磷酸核苷结合域。

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摘要

Products of the approximately 9.5-kb virB operon are proposed to direct the export of T-DNA/protein complexes across the Agrobacterium tumefaciens envelope en route to plant cells. The presence of conserved nucleoside triphosphate (NTP)-binding domains in VirB4 and VirB11 suggests that one or both proteins couple energy, via NTP hydrolysis, to T-complex transport. To assess the importance of VirB4 for virulence, a nonpolar virB4 null mutation was introduced into the pTiA6NC plasmid of strain A348. The 2.37-kb virB4 coding sequence was deleted precisely by oligonucleotide-directed mutagenesis in vitro. The resulting delta virB4 mutation was exchanged for the wild-type allele by two sequential recombination events with the counterselectable Bacillus subtilis sacB gene. Two derivatives, A348 delta B4.4 and A348 delta B4.5, sustained a nonpolar deletion of the wild-type virB4 allele, as judged by Southern blot hybridization and immunoblot analyses with antibodies specific for VirB4, VirB5, VirB10, and VirB11. Transcription of wild-type virB4 from the lac promoter restored virulence to the nonpolar null mutants on a variety of dicotyledonous species, establishing virB4 as an essential virulence gene. A substitution of glutamine for Lys-439 and a deletion of Gly-438, Lys-439, and Thr-440 within the glycine-rich NTP-binding domain (Gly-Pro-Iso-Gly-Arg-Gly-Lys-Thr) abolished complementation of A348 delta B4.4 or A348 delta B4.5, demonstrating that an intact NTP-binding domain is critical for VirB4 function. Merodiploids expressing both the mutant and wild-type virB4 alleles exhibited lower virulence than A348, suggesting that VirB4, a cytoplasmic membrane protein, may contribute as a homo- or heteromultimer to A. tumefaciens virulence.
机译:提出了大约9.5 kb virB操纵子的产物,以指导T-DNA /蛋白质复合物在整个根癌农杆菌包膜中的出口,并直接进入植物细胞。 VirB4和VirB11中保守的三磷酸核苷(NTP)结合域的存在表明,一种或两种蛋白质通过NTP水解将能量耦合到T复合物转运。为了评估VirB4对毒力的重要性,将非极性virB4无效突变引入菌株A348的pTiA6NC质粒中。通过体外寡核苷酸定向诱变精确地删除了2.37-kb virB4编码序列。通过两个连续的重组事件与可逆选择的枯草芽孢杆菌sacB基因交换,将所得的三角洲virB4突变交换为野生型等位基因。通过Southern blot杂交和对VirB4,VirB5,VirB10和VirB11特异的抗体进行的免疫印迹分析判断,两种衍生物A348 delta B4.4和A348 delta B4.5维持了野生型virB4等位基因的非极性缺失。从lac启动子转录野生型virB4可将毒力恢复为多种双子叶植物物种上的非极性无效突变体,从而将virB4建立为必不可少的毒力基因。谷氨酰胺替代Lys-439并在富含甘氨酸的NTP结合结构域(Gly-Pro-Iso-Gly-Arg-Gly-Lys-Thr)中缺失Gly-438,Lys-439和Thr-440取消了A348 delta B4.4或A348 delta B4.5的互补,这表明完整的NTP结合域对于VirB4功能至关重要。同时表达突变型和野生型virB4等位基因的非二倍体显示出比A348更低的毒力,这表明细胞质膜蛋白VirB4可能是根癌农杆菌毒力的同源或异源多聚体。

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    Berger, B R; Christie, P J;

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  • 年度 1993
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