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噬菌体λ S基因的第二个功能。

A second function of the S gene of bacteriophage lambda.

作者信息

Wilson D B, Okabe A

出版信息

J Bacteriol. 1982 Dec;152(3):1091-5. doi: 10.1128/jb.152.3.1091-1095.1982.

Abstract

Infection of Escherichia coli by bacteriophage lambda caused an immediate inhibition of uptake by members of all three classes of E. coli active transport systems and made the inner membrane permeable to sucrose and glycine; however, infection stimulated alpha-methyl glucoside uptake. Phage infection caused a dramatic drop in the ATP pool of the cell, but the membrane did not become permeable to nucleotides. Infection by only one phage per cell was sufficient to cause transport inhibition. However, adsorption of phage to the lambda receptor did not cause transport inhibition; DNA injection was required. The inhibition of transport caused by lambda phage infection was transient, and by 20 min after infection, transport had returned to its initial level. The recovery of transport activity appeared to require a lambda structural protein with a molecular weight of 5,500. This protein was present in wild-type phage and at a reduced level in S7 mutant phage but was missing in S2 and S4 mutant phage. Cells infected with S7 phage had a partial recovery of active transport, whereas cells infected with S2 or S4 phage did not recover active transport. Neither the inhibition of transport caused by phage infection nor its recovery were affected by the protein synthesis inhibitors chloramphenicol and rifampin.

摘要

噬菌体λ感染大肠杆菌会立即抑制大肠杆菌所有三类主动运输系统成员的摄取,并使内膜对蔗糖和甘氨酸具有通透性;然而,感染会刺激α-甲基葡糖苷的摄取。噬菌体感染导致细胞内ATP池急剧下降,但膜对核苷酸仍不具有通透性。每个细胞仅感染一个噬菌体就足以导致运输抑制。然而,噬菌体吸附到λ受体上不会导致运输抑制;需要注入DNA。λ噬菌体感染引起的运输抑制是短暂的,感染后20分钟,运输已恢复到初始水平。运输活性的恢复似乎需要一种分子量为5500的λ结构蛋白。这种蛋白存在于野生型噬菌体中,在S7突变型噬菌体中的水平降低,但在S2和S4突变型噬菌体中缺失。感染S7噬菌体的细胞主动运输有部分恢复,而感染S2或S4噬菌体的细胞则没有恢复主动运输。噬菌体感染引起的运输抑制及其恢复均不受蛋白质合成抑制剂氯霉素和利福平的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e50/221613/8d371b816a75/jbacter00253-0137-a.jpg

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