Impact of chitin-derived β-N-acetyl-D-glucosaminyl-(1,4)-D-glucosamine on chitinase up-regulation in Shewanella baltica

几丁质酶 甲壳素 细菌 波罗地 微生物学 生物化学 弧菌 氨基葡萄糖 生物 弧菌科 海洋噬菌体 化学 遗传学 古生物学 奥陶纪 壳聚糖
作者
Takako Hirano,Masahiro Yokoyama,Masafumi Ikejima,Haruka Shiraishi,Wataru Hakamata,Toshiyuki Nishio
出处
期刊:Fems Microbiology Letters [Oxford University Press]
标识
DOI:10.1093/femsle/fnae064
摘要

Abstract The first steps in chitin degradation in marine bacteria involve chitinase, which produces N,N′-diacetylchitobiose (GlcNAc)2 from chitin. Moreover, in Vibrio bacteria, chitinase activity is enhanced by heterodisaccharide β-N-acetyl-D-glucosaminyl-(1,4)-D-glucosamine (GlcNAc-GlcN) produced from (GlcNAc)2 by chitin oligosaccharide deacetylase (COD). However, the role of COD in other marine bacteria, such as Shewanella, remains unexplored. This study investigates GlcNAc-GlcN's impact on chitinase gene expression and enzyme production in S. baltica ATCC BAA-1091, drawing parallels with Vibrio parahaemolyticus RIMD2210633. Using real-time quantitative PCR, the study assesses the up-regulation of chitinase gene expression in S. baltica in response to GlcNAc-GlcN, informed by COD's known ability to produce GlcNAc-GlcN from (GlcNAc)2. In Vibrio, GlcNAc-GlcN considerably up-regulates chitinase gene expression. This study posits a similar regulatory mechanism in S. baltica, with preliminary investigations indicating COD's capacity to produce GlcNAc-GlcN. This study highlights the importance of exploring GlcNAc-GlcN's regulatory role in chitin metabolism across diverse marine bacteria. The potential induction of chitinase production in S. baltica suggests broader ecological implications. Further research is crucial for a comprehensive understanding of chitin utilization and regulatory pathways in marine bacterial genera.
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