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The Transmembrane Morphogenesis Protein gp1 of Filamentous Phages Contains Walker A and Walker B Motifs Essential for Phage Assembly

机译:丝状噬菌体的跨膜形态发生蛋白gp1包含噬菌体组装所必需的沃克A和沃克B母题。

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摘要

In contrast to lytic phages, filamentous phages are assembled in the inner membrane and secreted across the bacterial envelope without killing the host. For assembly and extrusion of the phage across the host cell wall, filamentous phages code for membrane-embedded morphogenesis proteins. In the outer membrane of Escherichia coli, the protein gp4 forms a pore-like structure, while gp1 and gp11 form a complex in the inner membrane of the host. By comparing sequences with other filamentous phages, we identified putative Walker A and B motifs in gp1 with a conserved lysine in the Walker A motif (K14), and a glutamic and aspartic acid in the Walker B motif (D88, E89). In this work we demonstrate that both, Walker A and Walker B, are essential for phage production. The crucial role of these key residues suggests that gp1 might be a molecular motor driving phage assembly. We further identified essential residues for the function of the assembly complex. Mutations in three out of six cysteine residues abolish phage production. Similarly, two out of six conserved glycine residues are crucial for gp1 function. We hypothesise that the residues represent molecular hinges allowing domain movement for nucleotide binding and phage assembly.
机译:与裂解性噬菌体相反,丝状噬菌体在内膜中组装并分泌穿过细菌包膜而不会杀死宿主。为了在整个宿主细胞壁上组装和挤出噬菌体,丝状噬菌体编码膜嵌入的形态发生蛋白。在大肠杆菌的外膜中,蛋白gp4形成孔状结构,而gp1和gp11在宿主的内膜中形成复合物。通过将序列与其他丝状噬菌体进行比较,我们确定了gp1中假定的Walker A和B基序,Walker A基序(K14)中带有保守的赖氨酸,而Walker B基序中的谷氨酸和天冬氨酸(D88,E89)。在这项工作中,我们证明了沃克A和沃克B都是噬菌体生产必不可少的。这些关键残基的关键作用表明gp1可能是分子驱动噬菌体装配的分子。我们进一步确定了装配体功能所必需的残基。六个半胱氨酸残基中的三个突变消除了噬菌体的产生。同样,六个保守的甘氨酸残基中有两个对于gp1功能至关重要。我们假设残基代表分子铰链,允许域移动以进行核苷酸结合和噬菌体组装。

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