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Lipoprotein from the osmoregulated ABC transport system OpuA of Bacillus subtilis: Purification of the glycine betaine binding protein and characterization of a functional lipidless mutant
被引:48
|作者:
Kempf, B
[1
]
Gade, J
[1
]
Bremer, E
[1
]
机构:
[1] UNIV MARBURG, DEPT BIOL, MICROBIOL LAB, D-35032 MARBURG, GERMANY
关键词:
D O I:
10.1128/jb.179.20.6213-6220.1997
中图分类号:
Q93 [微生物学];
学科分类号:
071005 ;
100705 ;
摘要:
The OpuA transport system of Bacillus subtilis functions as a high-affinity uptake system for the osmoprotectant glycine betaine. It is a member of the ABC transporter superfamily and consists of an ATPase (OpuAA), an integral membrane protein (OpuAB), and a hydrophilic polypeptide (OpuAC) that shows the signature sequence of lipoproteins (B. Kempf and E. Bremer, J. Biol. Chem. 270:16701-16713, 1995). The OpuAC protein might thus serve as an extracellular substrate binding protein anchored in the cytoplasmic membrane via a lipid modification at an amino-terminal cysteine residue. A malE-opuAC hybrid gene was constructed and used to purify a lipidless OpuAC protein. The purified protein bound radiolabeled glycine betaine avidly and exhibited a K-D of 6 mu M for this ligand, demonstrating that OpuAC indeed functions as the substrate binding protein for the B. subtilis OpuA system. We have selectively expressed the opuAC gene under T7 phi 10 control in Escherichia call and have demonstrated through its metabolic labeling with [H-3]palmitic acid that OpuAC is a lipoprotein. A mutant expressing an OpuAC protein in which the amino-terminal cysteine residue was changed to an alanine (OpuAC-3),vas constructed by oligonucleotide site-directed mutagenesis. The OpuAC-3 protein aas not acylated by [H-3] palmitic acid, and part of it was secreted into the periplasmic space of E. coli, where it could be released from the cells by cold osmotic shock The opuAC-3 mutation was recombined into an otherwise wild-type opuA operon in the chromosome of B. subtilis. Unexpectedly, this mutant OpuAC system still functioned efficiently for glycine betaine acquisition in vivo under high-osmolarity growth conditions. In addition, the mutant OpuA transporter exhibited kinetic parameters similar to that of the wild-type system. Our data suggest that the lipidless OpuAC-3 protein is held in the cytoplasmic membrane of B. subtilis via its uncleaved hydrophobic signal peptide.
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页码:6213 / 6220
页数:8
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