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新型外膜脂蛋白NlpE的过量产生通过激活Cpx信号转导途径抑制周质LacZ的毒性。

Overproduction of NlpE, a new outer membrane lipoprotein, suppresses the toxicity of periplasmic LacZ by activation of the Cpx signal transduction pathway.

作者信息

Snyder W B, Davis L J, Danese P N, Cosma C L, Silhavy T J

机构信息

Department of Molecular Biology, Princeton University, New Jersey 08544, USA.

出版信息

J Bacteriol. 1995 Aug;177(15):4216-23. doi: 10.1128/jb.177.15.4216-4223.1995.

Abstract

The LamB-LacZ-PhoA tripartite fusion protein is secreted to the periplasm, where it exerts a toxicity of unknown origin during high-level synthesis in the presence of the inducer maltose, a phenotype referred to as maltose sensitivity. We selected multicopy suppressors of this toxicity that allow growth of the tripartite fusion strains in the presence of maltose. Mapping and subclone analysis of the suppressor locus identified a previously uncharacterized chromosomal region at 4.7 min that is responsible for suppression. DNA sequence analysis revealed a new gene with the potential to code for a protein of 236 amino acids with a predicted molecular mass of 25,829 Da. The gene product contains an amino-terminal signal sequence to direct the protein for secretion and a consensus lipoprotein modification sequence. As predicted from the sequence, the suppressor protein is labeled with [3H]palmitate and is localized to the outer membrane. Accordingly, the gene has been named nlpE (for new lipoprotein E). Increased expression of NlpE suppresses the maltose sensitivity of tripartite fusion strains and also the extracytoplasmic toxicities conferred by a mutant outer membrane protein, LamBA23D. Suppression occurs by activation of the Cpx two-component signal transduction pathway. This pathway controls the expression of the periplasmic protease DegP and other factors that can combat certain types of extracytoplasmic stress.

摘要

LamB-LacZ-PhoA三方融合蛋白分泌到周质中,在诱导剂麦芽糖存在的情况下进行高水平合成时,它会产生一种来源不明的毒性,这种表型被称为麦芽糖敏感性。我们筛选了这种毒性的多拷贝抑制子,这些抑制子能使三方融合菌株在麦芽糖存在的情况下生长。对抑制子位点的定位和亚克隆分析确定了位于4.7分钟处一个以前未被表征的染色体区域,该区域负责抑制作用。DNA序列分析揭示了一个新基因,它有可能编码一个由236个氨基酸组成的蛋白质,预测分子量为25,829道尔顿。该基因产物含有一个氨基末端信号序列,用于指导蛋白质分泌,还有一个共有脂蛋白修饰序列。正如从序列中预测的那样,抑制蛋白被[3H]棕榈酸标记,并定位于外膜。因此,该基因被命名为nlpE(新脂蛋白E)。NlpE表达的增加抑制了三方融合菌株的麦芽糖敏感性,以及由突变外膜蛋白LamBA23D所赋予的胞外毒性。抑制作用是通过激活Cpx双组分信号转导途径发生的。该途径控制周质蛋白酶DegP和其他能够对抗某些类型胞外应激的因子的表达。

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