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首页> 外文期刊>Journal of bacteriology >Identification and characterization of mutations in Escherichia coli that selectively influence the growth of hybrid lambda bacteriophages carrying the immunity region of bacteriophage P22.
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Identification and characterization of mutations in Escherichia coli that selectively influence the growth of hybrid lambda bacteriophages carrying the immunity region of bacteriophage P22.

机译:鉴定和表征大肠杆菌中选择性影响携带噬菌体P22免疫区域的杂交λ噬菌体生长的突变。

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摘要

Mutations in two Escherichia coli genes, sipA and sipB, result in a specific inhibition of the growth of certain hybrid lambdoid bacteriophages, lambda immP22, that have the early regulatory regions and adjacent genes from bacteriophage P22. The sipB391 mutation maps near minute 56 and exerts the strongest inhibitory effect on the growth of the hybrid phages. The sipA1 mutation maps near minute 72 and plays an auxiliary role: enhancing the action of sipB391. Such a role is not limited to sipA1, since there is a similar enhancement by the nusA1 and nusE71 mutations. The Sip-imposed restriction on the growth of lambda immP22 phages is not observed if the phage carries a mutation in the c1 gene. Perhaps this reflects the fact that the c1 product regulates phage DNA replication and is a major determinant in the decision governing whether the phage takes the lytic or lysogenic pathway. Consistent with this idea is the observation that lambda immP22 DNA replication is severely inhibited in bacteria carrying the sipB391 mutation. It is suggested that sip mutations exaggerate the normal role of c1 in limiting lytic growth. This causes a failure in the expression of sufficient amounts of some or all of the lytic gene products required for phage growth.
机译:两种大肠杆菌基因sipA和sipB中的突变导致对某些杂合性lambdoid噬菌体lambda immP22的生长产生特异性抑制,这些杂合性lambdoid噬菌体具有早期的调控区域,且与噬菌体P22相邻。 sipB391突变定位在第56分钟附近,对杂交噬菌体的生长具有最强的抑制作用。 sipA1突变位于第72分钟附近,并起辅助作用:增强sipB391的作用。这样的作用不限于sipA1,因为nusA1和nusE71突变具有类似的增强作用。如果噬菌体在c1基因中携带突变,则不会观察到Sip对λimmP22噬菌体生长的限制。也许这反映了c1产物调节噬菌体DNA复制的事实,并且是决定噬菌体是采取裂解途径还是溶原途径的主要决定因素。与此观点一致的是,在携带sipB391突变的细菌中,λimmP22 DNA复制受到严重抑制。建议sip突变夸大了c1在限制裂解生长中的正常作用。这导致噬菌体生长所需的足够数量的部分或全部裂解基因产物的表达失败。

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