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The Genome of the Novel Phage Rtp with a Rosette-Like Tail Tip Is Homologous to the Genome of Phage T1

机译:新型噬菌体Rtp的基因组具有类似玫瑰花的尾尖与噬菌体T1的基因组同源

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摘要

Anew Escherichia coli phage, named Rtp, was isolated and shown to be closely related to phage T1. Electron microscopy revealed that phage Rtp has a morphologically unique tail tip consisting of four leaf-like structures arranged in a rosette, whereas phage T1 has thinner, flexible leaves that thicken toward the ends. In contrast to T1, Rtp did not require FhuA and TonB for infection. The 46.2-kb genome of phage Rtp encodes 75 open reading frames, 47 of which are homologous to phage T1 genes. Like phage T1, phage Rtp encodes a large number of small genes at the genome termini that exhibit no sequence similarity to known genes. Six predicted genes larger than 300 nucleotides in the highly homologous region of Rtp are not found in T1. Two predicted HNH endonucleases are encoded at positions different from those in phage T1. The sequence similarity of rtp37, -38, -39, -41, -42, and -43 to equally arranged genes of lambdoid phages suggests a common tail assembly initiation complex. Protein Rtp43 is homologous to the λ J protein, which determines λ host specificity. Since the two proteins differ most in the C-proximal area, where the binding site to the LamB receptor resides in the J protein, we propose that Rtp43 contributes to Rtp host specificity. Lipoproteins similar to the predicted lipoprotein Rtp45 are found in a number of phages (encoded by cor genes) in which they prevent superinfection by inactivating the receptors. We propose that, similar to the proposed function of the phage T5 lipoprotein, Rtp45 prevents inactivation of Rtp by adsorption to its receptor during cells lysis. Rtp52 is a putative transcriptional regulator, for which 10 conserved inverted repeats were identified upstream of genes in the Rtp genome. In contrast, the much larger E. coli genome has only one such repeat sequence.
机译:分离出一种新的大肠杆菌噬菌体,称为Rtp,并显示与噬菌体T1密切相关。电子显微镜显示,噬菌体Rtp具有形态独特的尾尖,该尾尖由排列在莲座丛中的四个叶状结构组成,而噬菌体T1的叶片较薄且柔韧,向末端变厚。与T1相比,Rtp不需要FhuA和TonB进行感染。噬菌体Rtp的46.2-kb基因组编码75个开放阅读框,其中47个与噬菌体T1基因同源。与噬菌体T1相似,噬菌体Rtp在基因组末端编码大量小基因,这些小基因与已知基因没有序列相似性。在T1中没有发现Rtp高度同源区域中六个大于300个核苷酸的预测基因。两种预测的HNH核酸内切酶在不同于噬菌体T1的位置编码。 rtp37,-38,-39,-41,-42和-43与lambdoid噬菌体均等排列的基因的序列相似性提示了常见的尾部装配起始复合物。 Rtp43蛋白与λJ蛋白同源,后者决定了λ宿主特异性。由于这两种蛋白质在C附近区域(与LamB受体的结合位点位于J蛋白中)的差异最大,因此我们建议Rtp43有助于Rtp宿主特异性。在许多噬菌体(由cor基因编码)中发现了与预测的脂蛋白Rtp45类似的脂蛋白,其中它们通过使受体失活来防止过度感染。我们建议,类似于噬菌体T5脂蛋白的拟议功能,Rtp45通过在细胞裂解过程中吸附至其受体来防止Rtp失活。 Rtp52是一个推定的转录调节子,在Rtp基因组的基因上游发现了10个保守的反向重复序列。相反,大得多的大肠杆菌基因组只有一个这样的重复序列。

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