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首页> 外文期刊>Applied and Environmental Microbiology >Secretion and Transcriptional Regulation of the Latex-Clearing Protein, Lcp, by the Rubber-Degrading Bacterium Streptomyces sp. Strain K30
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Secretion and Transcriptional Regulation of the Latex-Clearing Protein, Lcp, by the Rubber-Degrading Bacterium Streptomyces sp. Strain K30

机译:橡胶降解细菌链霉菌属菌种的含乳胶蛋白Lcp的分泌和转录调控。菌株K30

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About 22,000 1-methyl-3-nitro-1-nitrosoguanidine- and UV-induced mutants of the rubber-degrading bacterium Streptomyces sp. strain K30 were characterized for the ability to produce clear zones on natural rubber latex overlay agar plates. Thirty-five mutants were defective solely in cleavage of rubber and were phenotypically complemented with the wild-type lcp (latex clearing protein) gene. Sixty-nine mutants exhibited a pleiotropic phenotype and were impaired in utilization of rubber and xylan, indicating that the enzymes responsible for the initial cleavage of these polymers are exported by the same secretion pathway (Q. K. Beg, M. Kapoor, L. Mahajan, and G. S. Hoondal, Appl. Microbiol. Biotechnol. 56:326-3381, 2001; U. K. Laemmli, Nature 227:680-685, 1970). Analysis of the amino acid sequence encoded by lcp revealed a twin-arginine motif, indicating that Lcp is a substrate of the twin-arginine translocation (Tat) pathway (K. Dilks, W. Rose, E. Hartmann, and M. Pohlschr?der, J. Bacteriol. 185:1478-1483, 2003). A tatC disruption mutant of Streptomyces lividans 10-164 harboring lcp from Streptomyces sp. strain K30 was not capable of forming clear zones on rubber overlay agar plates. Moreover, Lcp and enhanced green fluorescent protein fusion proteins were detected in the supernatant. Using Escherichia coli having the twin-arginine motif in the signal peptide upstream of Lcp, clear evidence that Lcp is secreted was obtained. Transcriptional analysis revealed basal expression of Lcp in glucose-grown cells and that transcription of lcp is obviously induced in the presence of poly(cis-1,4-isoprene). In contrast, oxiB and oxiA, which are located directly downstream of lcp and putatively encode a heteromultimeric aldehyde dehydrogenase oxidizing the primary cleavage products generated by Lcp from poly(cis-1,4-isoprene), were expressed only in the presence of poly(cis-1,4-isoprene). Expression of lcp at a low level is thus required for sensing the polymer in the medium. Rubber degradation products may then induce the transcription of genes coding for enzymes catalyzing the later steps of poly(cis-1,4-isoprene) degradation and the transcription of lcp itself. lcp, oxiB, and oxiA seem to constitute an operon, as a polycistronic mRNA comprising these three genes was detected. The transcriptional start site of lcp was mapped 400 bp upstream of the lcp start codon.
机译:橡胶降解细菌Streptomyces sp的约22,000个1-甲基-3-硝基-1-亚硝基胍和UV诱导的突变体。菌株K30的特征在于能够在天然橡胶胶乳覆盖琼脂平板上产生透明区域的能力。 35个突变体仅在切割橡胶方面存在缺陷,并且在表型上与野生型lcp(乳胶清除蛋白)基因互补。 69个突变体表现出多效性表型,并且在橡胶和木聚糖的利用上受到损害,表明负责这些聚合物初始裂解的酶通过相同的分泌途径输出(QK Beg,M。Kapoor,L。Mahajan和GS Hoondal,Appl.Microbiol.Biotechnol.56:326-3381,2001; UK Laemmli,Nature 227:680-685,1970)。对由lcp编码的氨基酸序列的分析揭示了双精氨酸基序,表明Lcp是双精氨酸易位(Tat)途径的底物(K. Dilks,W。Rose,E。Hartmann和M. Pohlschr? der,J.Bacteriol.185:1478-1483,2003)。一个tatC破坏链霉菌的轻链链霉菌10-164,带有来自链霉菌种的lcp。菌株K30无法在橡胶覆盖的琼脂平板上形成透明区域。此外,在上清液中检测到Lcp和增强的绿色荧光蛋白融合蛋白。使用在Lcp上游的信号肽中具有双精氨酸基序的大肠杆菌,获得了Lcp被分泌的明确证据。转录分析显示Lcp在葡萄糖生长的细胞中的基础表达,并且在聚(cis-1,4-isoprene)的存在下明显诱导了lcp的转录。相反,olcB和oxiA直接位于lcp的下游,并假定编码一个杂多聚醛脱氢酶,该酶氧化Lcp从聚(顺-1,4-异戊二烯)生成的初级裂解产物,仅在存在聚(顺式1,4-异戊二烯)。因此需要低水平的lcp表达来感测介质中的聚合物。然后,橡胶降解产物可能诱导编码酶的基因转录,从而催化聚(顺-1,4-异戊二烯)降解的后续步骤以及lcp本身的转录。 lcp,oxiB和oxiA似乎构成操纵子,因为检测到包含这三个基因的多顺反子mRNA。将lcp的转录起始位点定位在lcp起始密码子上游400bp处。

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