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噬菌体尾部成分。IV. T4D感染的大肠杆菌B中蝶酰多谷氨酸的合成。

Bacteriophage tail components. IV. Pteroyl polyglutamate synthesis in T4D-infected Escherichia coli B.

作者信息

Kozloff L M, Lute M

出版信息

J Virol. 1973 May;11(5):630-6. doi: 10.1128/JVI.11.5.630-636.1973.

Abstract

The nature of pteroyl polyglutamates in uninfected and T4D bacteriophage-infected Escherichia coli B has been examined. (3)H-p-aminobenzoic acid has been used to label the folate compounds and gel permeation chromatography on glass beads to separate the folate compound by molecular size. It has been found that, although the major folate compound in uninfected bacteria is pteroyl triglutamate, E. coli B cells also contain folate compounds having as many as six glutamate residues. Infection with T4D stimulated the addition of glutamate residues to the lower-molecular-weight host pteroyl compounds, resulting in the conversion of the host compounds into the hexaglutamate form. This viral-induced conversion is chloramphenicol sensitive and appears to be due to a late phage gene product. The phage gene responsible for this conversion has not been identified. In cells infected with a T4D mutant defective in gene 28, there was an apparent production of the large pteroyl polyglutamates equivalent in size to pte(glu)(9-12). These high-molecular-weight forms were converted into pte(glu)(6) by incubation with bacterial extracts made after infection with T4D 28(+). Apparently, the product of T4D gene 28(+) is capable of specifically cleaving the high-molecular-weight polyglutamates to the form necessary for phage tail assembly.

摘要

已对未感染和T4D噬菌体感染的大肠杆菌B中蝶酰多聚谷氨酸的性质进行了研究。利用(3)H-对氨基苯甲酸标记叶酸化合物,并通过玻璃珠凝胶渗透色谱法按分子大小分离叶酸化合物。已发现,尽管未感染细菌中的主要叶酸化合物是蝶酰三谷氨酸,但大肠杆菌B细胞也含有多达六个谷氨酸残基的叶酸化合物。用T4D感染刺激了低分子量宿主蝶酰化合物上谷氨酸残基的添加,导致宿主化合物转化为六谷氨酸形式。这种病毒诱导的转化对氯霉素敏感,似乎是由于噬菌体晚期基因产物所致。负责这种转化的噬菌体基因尚未确定。在用基因28缺陷的T4D突变体感染的细胞中,明显产生了大小与蝶酰(谷氨酸)(9-12)相当的大蝶酰多聚谷氨酸。通过与T4D 28(+)感染后制备的细菌提取物一起温育,这些高分子量形式被转化为蝶酰(谷氨酸)(6)。显然,T4D基因28(+)的产物能够将高分子量多聚谷氨酸特异性切割成噬菌体尾部组装所需的形式。

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Folic acid, a structural component of T4 bacteriophage.叶酸,T4噬菌体的一种结构成分。
J Mol Biol. 1965 Jul;12(3):780-92. doi: 10.1016/s0022-2836(65)80327-8.

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