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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.

机译:来自渗透调节的枯草芽孢杆菌ABC转运系统OpuA的脂蛋白:甘氨酸甜菜碱结合蛋白的纯化和功能性无脂质突变体的表征。

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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 KD of 6 microM 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 phi10 control in Escherichia coli and have demonstrated through its metabolic labeling with [3H]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) was constructed by oligonucleotide site-directed mutagenesis. The OpuAC-3 protein was not acylated by [3H]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.
机译:枯草芽孢杆菌的OpuA转运系统起着渗透保护剂甘氨酸甜菜碱的高亲和力吸收系统的作用。它是ABC转运蛋白超家族的成员,由ATP酶(OpuAA),整合膜蛋白(OpuAB)和亲水性多肽(OpuAC)组成,可显示脂蛋白的签名序列(B. Kempf和E. Bremer,J Biol.Chem.270:16701-16713,1995)。因此,OpuAC蛋白可以作为通过氨基末端半胱氨酸残基上的脂质修饰锚定在细胞质膜中的细胞外底物结合蛋白。构建了malE-opuAC杂合基因,并用于纯化无脂质的OpuAC蛋白。纯化的蛋白狂热地结合了放射性标记的甘氨酸甜菜碱,并对该配体表现出6 microM的KD,表明OpuAC确实充当了枯草芽孢杆菌OpuA系统的底物结合蛋白。我们已经在T7 phi10的控制下在大肠杆菌中选择性表达了opuAC基因,并通过[3H]棕榈酸的代谢标记证明了OpuAC是脂蛋白。通过寡核苷酸定点诱变构建表达OpuAC蛋白的突变体,其中氨基末端半胱氨酸残基变为丙氨酸(OpuAC-3)。 OpuAC-3蛋白没有被[3H]棕榈酸酰化,它的一部分被分泌到大肠杆菌的周质空间中,在那里它可以通过冷渗透休克从细胞中释放出来。 opuAC-3突变在枯草芽孢杆菌的染色体中重组为原本为野生型的opuA操纵子。出乎意料的是,这种突变的OpuAC系统仍在高渗透压生长条件下有效地体内获取甘氨酸甜菜碱。另外,突变的OpuA转运蛋白表现出与野生型系统相似的动力学参数。我们的数据表明,无脂OpuAC-3蛋白通过其未裂解的疏水信号肽被保留在枯草芽孢杆菌的细胞质膜中。

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  • 作者

    Kempf, B; Gade, J; Bremer, E;

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  • 年度 1997
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