The periplasmic cyclodextrin binding protein CymE from Klebsiella oxytoca and lts role in maltodextrin and cyclodextrin transport

被引:46
作者
Pajatsch, M
Gerhart, M
Peist, R
Horlacher, R
Boos, W
Böck, A
机构
[1] Univ Munich, Lehrstuhl Mikrobiol, Inst Genet & Microbiol, D-80638 Munich, Germany
[2] Univ Konstanz, Lehrstuhl Mikrobiol, D-78434 Constance, Germany
关键词
D O I
10.1128/JB.180.10.2630-2635.1998
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Klebsiella oxytoca M5a1 has the capacity to transport and to metabolize alpha-, beta- and gamma-cyclodextrins. Cyclodextrin transport is mediated by the products of the cymE, cymF, cymG, cymD, and cymA genes, which are functionally homologous to the malE, malF, malG, malK, and lamB gene products of Escherichia coli. CymE, which is the periplasmic binding protein, has been overproduced and purified. By substrate-induced fluorescence quenching, the binding of ligands was analyzed. CymE bound alpha-cyclodextrin, beta-cyclodextrin, and gamma-cyclodextrin, with dissociation constants (K-d) of 0.02, 0.14 and 0.30 mu M respectively, and linear maltoheptaose, with a K-d of 70 mu M. In transport experiments, alpha-cyclodextrin was taken up by the cym system of K. oxytoca three to five times less efficiently than maltohexaose by the E. call maltose system. Besides alpha-cyclodextrin, maltohexaose was also taken up by the K. oxytoca cym system, but because of the inability of maltodextrins to induce the cym system, growth off. coli mal mutants on linear maltodextrin was not observed when the cells harbored only the cym uptake system. Strains which gained this capacity by mutation could easily be selected, however.
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页码:2630 / 2635
页数:6
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