Das A, Xie Y H
Department of Biochemistry, University of Minnesota, St Paul 55108, USA.
Mol Microbiol. 1998 Jan;27(2):405-14. doi: 10.1046/j.1365-2958.1998.00688.x.
Protein fusion with the Escherichia coli alkaline phosphatase is used extensively for the analysis of the topology of membrane proteins. To study the topology of the Agrobacterium T-DNA transfer proteins, we constructed a transposon, Tn3phoA. The transposon mobilizes into plasmids at a high frequency, is stable after transposition, can produce phoA translational fusions and can be used for the analysis of protein topology directly in the bacterium of interest. For studies on the DNA transfer proteins, an Agrobacterium strain deficient in phoA under our experimental conditions was constructed by chemical mutagenesis. A plasmid containing virB and virD4 was used as a target for mutagenesis. Twenty-eight unique phoA-positive clones that mapped to eight virB genes were isolated. Multiple insertions throughout VirB1, VirB5, VirB7, VirB9 and VirB10 indicated that these proteins primarily face the periplasm. Insertions in VirB2, VirB6 and VirB8 allowed the identification of their periplasmic domains. No insertions were found in VirB3, VirB4 and VirB11. These proteins either lack or have a short periplasmic domain. No insertions mapped to VirD4 either. To study VirD4 topology, targeted phoA fusions and random lacZ fusions were constructed. Analysis of the fusion proteins indicated that VirD4 contains a single periplasmic domain near the N-terminus, and most of the protein lies in the cytoplasm. A hypothetical model for the T-DNA transport pore is presented.
蛋白质与大肠杆菌碱性磷酸酶的融合被广泛用于分析膜蛋白的拓扑结构。为了研究根癌农杆菌T-DNA转移蛋白的拓扑结构,我们构建了一个转座子Tn3phoA。该转座子能以高频转移到质粒中,转座后稳定,可产生phoA翻译融合体,并且可直接用于在目标细菌中分析蛋白质拓扑结构。为了研究DNA转移蛋白,我们通过化学诱变构建了在我们的实验条件下缺乏phoA的根癌农杆菌菌株。一个含有virB和virD4的质粒被用作诱变靶点。分离出了28个定位到8个virB基因的独特的phoA阳性克隆。在VirB1、VirB5、VirB7、VirB9和VirB10中的多个插入表明这些蛋白主要面向周质。在VirB2、VirB6和VirB8中的插入使得能够鉴定它们的周质结构域。在VirB3、VirB4和VirB11中未发现插入。这些蛋白要么没有周质结构域,要么有一个短的周质结构域。也没有插入定位到VirD4。为了研究VirD4的拓扑结构,构建了靶向phoA融合体和随机lacZ融合体。对融合蛋白的分析表明,VirD4在N端附近含有一个单一的周质结构域,并且大部分蛋白位于细胞质中。提出了一个T-DNA运输孔的假设模型。