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The three genes lipB, lipC, and lipD involved in the extracellular secretion of the Serratia marcescens lipase which lacks an N-terminal signal peptide.

机译:三种基因lipB,lipC和lipD参与了粘质沙雷氏菌脂肪酶缺乏N端信号肽的细胞外分泌。

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摘要

The extracellular lipase of Serratia marcescens Sr41, lacking a typical N-terminal signal sequence, is secreted via a signal peptide-independent pathway. The 20-kb SacI DNA fragment which allowed the extracellular lipase secretion was cloned from S. marcescens by selection of a phenotype conferring the extracellular lipase activity on the Escherichia coli cells. The subcloned 6.5-kb EcoRV fragment was revealed to contain three open reading frames which are composed of 588, 443, and 437 amino acid residues constituting an operon (lipBCD). Comparisons of the deduced amino acid sequences of the lipB, lipC, and lipD genes with those of the Erwinia chrysanthemi prtDEC, prtEEC, and prtFEC genes encoding the secretion apparatus of the E. chrysanthemi protease showed 55, 46, and 42% identity, respectively. The products of the lipB and lipC genes were 54 and 45% identical to the S. marcescens hasD and hasE gene products, respectively, which were secretory components for the S. marcescens heme-binding protein and metalloprotease. In the E. coli DH5 cells, all three lipBCD genes were essential for the extracellular secretion of both S. marcescens lipase and metalloprotease proteins, both of which lack an N-terminal signal sequence and are secreted via a signal-independent pathway. Although the function of the lipD gene seemed to be analogous to those of the prtFEC and tolC genes encoding third secretory components of ABC transporters, the E. coli TolC protein, which was functional for the S. marcescens Has system, could not replace LipD in the LipB-LipC-LipD transporter reconstituted in E. coli. These results indicated that these three proteins are components of the device which allows extracellular secretion of the extracellular proteins of S. marcescens and that their style is similar to that of the PrtDEF(EC) system.
机译:粘质沙雷氏菌Sr41的细胞外脂肪酶缺乏典型的N端信号序列,通过信号肽非依赖性途径分泌。通过选择赋予大肠杆菌细胞胞外脂肪酶活性的表型,从marcescens中克隆允许分泌胞外脂肪酶的20kb SacI DNA片段。发现亚克隆的6.5-kb EcoRV片段含有三个开放阅读框,其由构成操纵子(lipBCD)的588、443和437个氨基酸残基组成。推断的lipB,lipC和lipD基因的氨基酸序列与菊花欧文氏菌的prtDEC,prtEEC和prtFEC基因的编码氨基酸序列分别比较,分别具有55%,46%和42%的同一性。 。 lipB和lipC基因的产物分别与marcescens S. marcescens的hasD和hasE基因产物相同,分别为54和45%,这是marcescens血红素结合蛋白和金属蛋白酶的分泌成分。在大肠杆菌DH5细胞中,所有三个lipBCD基因对于粘质链球菌脂肪酶和金属蛋白酶蛋白的细胞外分泌都是必不可少的,这两个蛋白均缺乏N端信号序列,并且通过信号独立途径分泌。尽管lipD基因的功能似乎与编码ABC转运蛋白第三分泌成分的prtFEC和tolC基因的功能相似,但对Marcescens Has系统具有功能的大肠杆菌TolC蛋白无法替代LipD基因。在大肠杆菌中重构的LipB-LipC-LipD转运蛋白。这些结果表明这三种蛋白质是装置的组成部分,其允许Marcescens的胞外蛋白质的胞外分泌,并且它们的样式类似于PrtDEF(EC)系统的样式。

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