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Effects of inserting eight amino acid residues into the major lipoprotein on its assembly in the outer membrane of Escherichia coli.

机译:在主要脂蛋白中插入八个氨基酸残基对其在大肠杆菌外膜中的装配的影响。

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摘要

A DNA sequence consisting of 24 base pairs was inserted into the structural gene (lpp) coding for the major lipoprotein of the Escherichia coli outer membrane which was carried on a high-copy-number plasmid in which expression was regulated through a lac promoter-operator region. This modification resulted in the insertion of eight amino acid residues, Glu-Glu-Phe-Leu-Glu-Glu-Phe-Leu, between the glutamine residue at position 9 and the leucine residue at position 10 of the wild-type lipoprotein sequence. When production of the mutant lipoprotein was induced by a lac inducer, the cells became swollen, showed unusual morphology, and eventually lysed. When the membrane fraction was analyzed after the induction, the mutant lipoprotein was found to have been normally secreted across the cytoplasmic membrane and assembled in the outer membrane. This lipoprotein was modified with glycerol and palmitic acid and even formed the bound form, which was linked covalently to peptidoglycan. The major difference between the membrane-associated mutant lipoprotein and the wild-type lipoprotein was that the mutant lipoprotein became sensitive to trypsin treatment. These results indicate that the substantial alteration in mutant lipoprotein structure near the amino-terminal end does not interfere with modification of the amino-terminal cysteine residue or cleavage of the signal peptide by the prolipoprotein-specific signal peptidase. However, this mutant lipoprotein assembled in the outer membrane appears to have deleterious effects with respect to envelope structure and cellular morphology and viability.
机译:将由24个碱基对组成的DNA序列插入编码大肠杆菌外膜主要脂蛋白的结构基因(lpp)中,该结构基因携带在高拷贝数质粒上,通过lac启动子-操纵子调节表达区域。该修饰导致在野生型脂蛋白序列的位置9的谷氨酰胺残基和位置10的亮氨酸残基之间插入八个氨基酸残基,Glu-Glu-Phe-Leu-Glu-Glu-Phe-Leu。当由lac诱导剂诱导突变型脂蛋白产生时,细胞变得肿胀,表现出异常的形态,并最终裂解。当在诱导后分析膜级分时,发现突变的脂蛋白通常已经在细胞质膜上分泌并组装在外膜中。该脂蛋白用甘油和棕榈酸修饰,甚至形成结合形式,该结合形式与肽聚糖共价连接。膜相关突变脂蛋白和野生型脂蛋白之间的主要区别在于,突变脂蛋白对胰蛋白酶处理变得敏感。这些结果表明,在氨基末端附近的突变体脂蛋白结构的实质性改变不干扰氨基末端半胱氨酸残基的修饰或脂原蛋白特异性信号肽酶对信号肽的切割。然而,组装在外膜中的这种突变脂蛋白似乎对包膜结构,细胞形态和生存力具有有害作用。

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