Anderson L B, Hertzel A V, Das A
Department of Biochemistry, University of Minnesota, St. Paul 55108, USA.
Proc Natl Acad Sci U S A. 1996 Aug 20;93(17):8889-94. doi: 10.1073/pnas.93.17.8889.
Agrobacterium tumefaciens VirB proteins are essential for gene transfer from bacteria to plants. These proteins are postulated to form a transport pore to allow transfer of the T-strand DNA intermediate. To study the function of the VirB proteins in DNA transfer, we developed an expression system in A. tumefaciens. Analysis of one VirB protein, VirB9, by Western blot assays showed that under nonreducing conditions VirB9, when expressed alone, migrates as a approximately 31-kDa band but that it migrates as a approximately 36-kDa band when expressed with all other VirB proteins. The 36-kDa band is converted to the 31-kDa band by the reducing agent 2-mercaptoethanol. Using strains that contain a deletion in a defined virB gene and strains that express specific VirB proteins, we demonstrate that the 36-kDa band is composed of VirB9 and VirB7 that are linked to each other by a disulfide bond. Mutational studies demonstrate that cysteine residues at positions 24 of VirB7 and 262 of VirB9 participate in the formation of this complex.
根癌农杆菌的VirB蛋白对于基因从细菌转移到植物至关重要。据推测,这些蛋白会形成一个转运孔,以允许T链DNA中间体的转移。为了研究VirB蛋白在DNA转移中的功能,我们在根癌农杆菌中开发了一种表达系统。通过蛋白质免疫印迹分析一种VirB蛋白VirB9,结果显示在非还原条件下,单独表达时VirB9迁移为一条约31 kDa的条带,但与所有其他VirB蛋白一起表达时,它迁移为一条约36 kDa的条带。用还原剂2-巯基乙醇可将36 kDa的条带转化为31 kDa的条带。使用在特定virB基因中含有缺失的菌株以及表达特定VirB蛋白的菌株,我们证明36 kDa的条带由通过二硫键相互连接的VirB9和VirB7组成。突变研究表明,VirB7第24位的半胱氨酸残基和VirB9第262位的半胱氨酸残基参与了这种复合物的形成。