首页> 外文OA文献 >Uptake of N,N′-Diacetylchitobiose [(GlcNAc)2] via the Phosphotransferase System Is Essential for Chitinase Production by Serratia marcescens 2170
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Uptake of N,N′-Diacetylchitobiose [(GlcNAc)2] via the Phosphotransferase System Is Essential for Chitinase Production by Serratia marcescens 2170

机译:通过磷酸转移酶系统吸收N,N'-二乙酰基壳二糖[(GlcNAc)2]对粘质沙雷氏菌2170生产几丁质酶至关重要

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摘要

The chiR gene of Serratia marcescens 2170, encoding a LysR-type transcriptional activator, was identified previously as an essential factor for expression of chitinases and a chitin-binding protein, CBP21. To identify other genes that are essential for chitinase production, transposon mutagenesis with mini-Tn5Km1 was carried out, and 25 mutants that were unable to produce chitinases and CBP21 were obtained. Analysis of the mutated gene of one of the mutants, N22, revealed the presence of a pts operon in this bacterium, and a mutation was found in ptsI in the operon. In addition to its inability to produce chitinase, N22 did not grow well on N-acetyl-d-glucosamine (GlcNAc), (GlcNAc)2, and some other carbon sources, most of which were phosphotransferase system (PTS) sugars. Thus, the inability to produce chitinase was assumed to be caused by the defect in uptake of (GlcNAc)2 via the PTS, considering that (GlcNAc)2 is the minimal substrate for chitinase induction and the major product of chitin hydrolysis by chitinases of this bacterium. To confirm this assumption, the chb operon, encoding the (GlcNAc)2-specific enzyme II permease, was cloned by reference to its Escherichia coli counterpart, and the Serratia chb operon was shown to comprise chbB, chbC, bglA, chbR, and chbG. Disruption of chbC drastically reduced production of chitinases and CBP21 and impaired growth on colloidal chitin. These results indicate that uptake of (GlcNAc)2 is mediated by the PTS and that the (GlcNAc)2-specific enzyme II permease constitutes its major pathway. Since (GlcNAc)2 uptake is essential for induction of chitinases and CBP21 production, (GlcNAc)2 appears to be the key molecule in recognition and utilization of chitin by S. marcescens.
机译:先前已经鉴定出编码LysR型转录激活因子的粘质沙雷氏菌2170的chiR基因是表达几丁质酶和几丁质结合蛋白CBP21的必需因子。为了鉴定对于几丁质酶生产必不可少的其他基因,使用mini-Tn5Km1进行了转座子诱变,获得了25个不能产生几丁质酶和CBP21的突变体。分析其中一个突变体N22的突变基因后,发现该细菌中存在pts操纵子,并且在操纵子的ptsI中发现了一个突变。除了无法产生几丁质酶外,N22在N-乙酰基-d-葡糖胺(GlcNAc),(GlcNAc)2和其他一些碳源上的生长也不佳,其中大多数是磷酸转移酶系统(PTS)糖。因此,考虑到(GlcNAc)2是几丁质酶诱导的最小底物和几丁质酶的几丁质酶水解的主要产物,因此认为不能产生几丁质酶是由通过PTS摄取(GlcNAc)2的缺陷引起的。细菌。为了证实这一假设,参照其对应的大肠杆菌克隆了编码(GlcNAc)2特异性酶II通透酶的chb操纵子,沙雷氏菌chb操纵子显示包含chbB,chbC,bglA,chbR和chbG 。破坏chbC会大大降低几丁质酶和CBP21的产生,并损害胶质几丁质的生长。这些结果表明,(GlcNAc)2的摄取是由PTS介导的,并且(GlcNAc)2特异性酶II渗透酶构成其主要途径。由于(GlcNAc)2摄取对于几丁质酶的诱导和CBP21的产生必不可少,因此(GlcNAc)2似乎是马氏链球菌识别和利用几丁质的关键分子。

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