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Specialized transducing phage lambda carrying the genes for coupling factor of oxidative phosphorylation of Escherichia coli: increased synthesis of coupling factor on induction of prophage lambda asn.

机译:携带大肠杆菌氧化磷酸化偶联因子基因的专业转导噬菌体λ:诱导噬菌体λasn的偶联因子合成增加。

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摘要

Studies were made of the synthesis of the coupling factor complex (F1--F0) of oxidative phosphorylation after prophage induction of a set of Escherichia coli strains lysogenic for defective transducing phage lambda asn, lambda uncA, or lambda bglC. The transducing phages had been isolated from a strain of E. coli carrying prophage lambda cI857 S7 within the bglB gene located near the unc gene cluster [Miki, T., Hiraga, S., Nagata, T. & Yura, T. (1978) Proc. Natl. Acad. Sci. USA 75, 5099--5103]. When lysogenic cells carrying lambda asn and lambda cI857 S7 were induced at high temperature, synthesis of the F1-ATPase portion of the complex increased to severalfold that of the noninduced cells. In contrast, no increase was observed upon thermoinduction of cells carrying lambda uncA or lambda bglC. The number of membrane sites that could bind purified F1-ATPase also increased significantly upon induction by lambda asn but not by lambda uncA or lambda bglC. In addition, F1-depleted membranes prepared from lambda asn-induced bacteria required more dicyclohexylcarbodiimide to seal the proton pathway than did those from noninduced bacteria. These results strongly suggest that lambda asn carries a set of bacterial genes coding for all the F1 polypeptides (the alpha, beta, gamma, delta, and probably the epsilon subunits) and at least some of the genes involved in formation of F0 polypeptides. Although lambda uncA carries the structural gene (uncA) for the alpha subunit of F1-ATPase, it apparently does not carry the whole set of F1--F0 genes.
机译:先兆诱导一组致病性转导噬菌体λasn,λuncA或λbglC的致溶性大肠杆菌菌株后氧化磷酸化的偶联因子复合物(F1-F0)的合成研究已经从位于unc基因簇附近的bglB基因内的携带噬菌体λcI857S7的大肠杆菌菌株中分离了转导噬菌体[Miki,T.,Hiraga,S.,Nagata,T.&Yura,T.(1978 )过程Natl。学院科学美国75,5099--5103]。当在高温下诱导携带λasn和λcI857 S7的溶菌细胞时,复合物的F1-ATPase部分的合成增加到非诱导细胞的几倍。相反,在热诱导携带λuncA或λbglC的细胞时未观察到增加。能被纯化的F1-ATP酶结合的膜位点数目在被λasn诱导后也显着增加,但未被uncA或λbglC诱导。此外,与非诱导细菌相比,由λ砷化氢诱导的细菌制备的F1耗尽的膜需要更多的二环己基碳二亚胺来密封质子途径。这些结果强烈表明,λasn携带一组细菌基因,该细菌基因编码所有F1多肽(α,β,γ,δ以及可能的ε亚基)以及至少一些参与F0多肽形成的基因。尽管lambda uncA携带F1-ATPaseα亚基的结构基因(uncA),但显然不携带F1-F0基因的整个集合。

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