Vogler A P, Broekhuizen C P, Schuitema A, Lengeler J W, Postma P W
Fachbereich Biologie/Chemie, AG Genetik, Universität Osnabrück, FRG.
Mol Microbiol. 1988 Nov;2(6):719-26. doi: 10.1111/j.1365-2958.1988.tb00082.x.
The Enzymes II of the PEP:carbohydrate phosphotransferase system (PTS) specific for N-acetylglucosamine (IINag) and beta-glucosides (IIBgl) contain C-terminal domains that show homology with Enzyme IIIGlc of the PTS. We investigated whether one or both of the Enzymes II could substitute functionally for IIIGlc. The following results were obtained: (i) Enzyme IINag, synthesized from either a chromosomal or a plasmid-encoded nagE+ gene could replace IIIGlc in glucose, methyl alpha-glucoside and sucrose transport via the corresponding Enzymes II. An Enzyme IINag with a large deletion in the N-terminal domain but with an intact C-terminal domain could also replace IIIGlc in IIGlc-dependent glucose transport. (ii) After decryptification of the Escherichia coli bgl operon, Enzyme IIBgl could substitute for IIIGlc. (iii) Phospho-HPr-dependent phosphorylation of methyl alpha-glucoside via IINag/IIGlc is inhibited by antiserum against IIIGlc as is N-acetylglucosamine phosphorylation via IINag. (iv) In strains that contained the plasmid which coded for IINag, a protein band with a molecular weight of 62,000 D could be detected with antiserum against IIIGlc. We conclude from these results that the IIIGlc-like domain of Enzyme IINag and IIBgl can replace IIIGlc in IIIGlc-dependent carbohydrate transport and phosphorylation.
碳水化合物磷酸转移酶系统(PTS)中对N - 乙酰葡糖胺(IINag)和β - 葡糖苷(IIBgl)具有特异性的酶II含有与PTS的酶IIIGlc具有同源性的C末端结构域。我们研究了这两种酶II中的一种或两种是否能在功能上替代IIIGlc。获得了以下结果:(i)由染色体或质粒编码的nagE⁺基因合成的酶IINag可以通过相应的酶II在葡萄糖、α - 甲基葡糖苷和蔗糖转运中替代IIIGlc。在N末端结构域有大片段缺失但C末端结构域完整的酶IINag也可以在依赖IIGlc的葡萄糖转运中替代IIIGlc。(ii)在大肠杆菌bgl操纵子解密后,酶IIBgl可以替代IIIGlc。(iii)通过IINag/IIGlc对α - 甲基葡糖苷的磷酸 - HPr依赖性磷酸化与通过IINag对N - 乙酰葡糖胺的磷酸化一样,受到抗IIIGlc血清的抑制。(iv)在含有编码IINag的质粒的菌株中,用抗IIIGlc血清可以检测到一条分子量为62,000 D的蛋白带。我们从这些结果得出结论,酶IINag和IIBgl的IIIGlc样结构域可以在依赖IIIGlc的碳水化合物转运和磷酸化中替代IIIGlc。