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使用不同或相同受体的T偶数型大肠杆菌噬菌体的亲缘关系程度以及血清学交叉反应位点的拓扑结构。

Degrees of relatedness of T-even type E. coli phages using different or the same receptors and topology of serologically cross-reacting sites.

作者信息

Schwarz H, Riede I, Sonntag I, Henning U

机构信息

Max-Planck-Institut für Biologie, Tübingen, FRG.

出版信息

EMBO J. 1983;2(3):375-80. doi: 10.1002/j.1460-2075.1983.tb01433.x.

Abstract

The relatedness of a series of T-even like phages which use the Escherichia coli outer membrane protein OmpA as a receptor, and the classical phages T2, T4 and T6 has been investigated. Immunoelectron microscopy and the pattern of phage resistance in bacterial mutants revealed that: (i) phages of this morphology do not necessarily cross-react serologically; (ii) phages using different receptors may bind heterologous IgG everywhere except to the tip (comprising approximately 10% of one fiber polypeptide) of the long tail fibers; (iii) cross-reacting OmpA-specific phages may bind heterologous IgG only to the tip of these fibers: (iv) OmpA-specific phages not cross-reacting at the tip of the tail fibers use different receptor sites on the protein. Absence of cross-reactivity appears to reflect high degrees of dissimilarity. A DNA probe consisting of genes encoding the two most distal tail fiber proteins of T4 detected homologies only in DNA from phages serologically cross-reacting at this fiber. Even under conditions of low stringency, allowing the formation of stable hybrids with almost 30% base mismatch, no such homologies could be found in serologically unrelated phages. Thus, in the collection of phages examined, there are sets of very similar and very dissimilar tail fiber genes and even of such gene segments.

摘要

对一系列以大肠杆菌外膜蛋白OmpA为受体的T偶数样噬菌体与经典噬菌体T2、T4和T6之间的亲缘关系进行了研究。免疫电子显微镜和细菌突变体中的噬菌体抗性模式表明:(i)这种形态的噬菌体在血清学上不一定会发生交叉反应;(ii)使用不同受体的噬菌体除了长尾纤维的尖端(约占一条纤维多肽的10%)外,可能在各处结合异源IgG;(iii)发生交叉反应的OmpA特异性噬菌体可能仅在这些纤维的尖端结合异源IgG;(iv)在尾纤维尖端不发生交叉反应的OmpA特异性噬菌体在该蛋白上使用不同的受体位点。缺乏交叉反应似乎反映了高度的不相似性。由编码T4最远端两个尾纤维蛋白的基因组成的DNA探针仅在来自在此纤维上血清学发生交叉反应的噬菌体的DNA中检测到同源性。即使在低严谨度条件下,允许形成具有近30%碱基错配的稳定杂交体,在血清学不相关的噬菌体中也找不到这种同源性。因此,在所检测的噬菌体集合中,存在非常相似和非常不相似的尾纤维基因集,甚至存在这样的基因片段集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/100f/555143/39434630ed34/emboj00256-0083-a.jpg

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