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包括单核细胞增生李斯特菌在内的李斯特菌属对几丁质的水解作用

Chitin hydrolysis by Listeria spp., including L. monocytogenes.

作者信息

Leisner J J, Larsen M H, Jørgensen R L, Brøndsted L, Thomsen L E, Ingmer H

机构信息

Department of Veterinary Pathobiology, Faculty of Life Sciences, University of Copenhagen, Grønnegårdsvej 15, 1870 Frederiksberg C, Denmark.

出版信息

Appl Environ Microbiol. 2008 Jun;74(12):3823-30. doi: 10.1128/AEM.02701-07. Epub 2008 Apr 18.

Abstract

Listeria spp., including the food-borne pathogen Listeria monocytogenes, are ubiquitous microorganisms in the environment and thus are difficult to exclude from food processing plants. The factors that contribute to their multiplication and survival in nature are not well understood, but the ability to catabolize various carbohydrates is likely to be very important. One major source of carbon and nitrogen in nature is chitin, an insoluble linear beta-1,4-linked polymer of N-acetylglucosamine (GlcNAc). Chitin is found in cell walls of fungi and certain algae, in the cuticles of arthropods, and in shells and radulae of molluscs. In the present study, we demonstrated that L. monocytogenes and other Listeria spp. are able to hydrolyze alpha-chitin. The chitinolytic activity is repressed by the presence of glucose in the medium, suggesting that chitinolytic activity is subjected to catabolite repression. Activity is also regulated by temperature and is higher at 30 degrees C than at 37 degrees C. In L. monocytogenes EGD, chitin hydrolysis depends on genes encoding two chitinases, lmo0105 (chiB) and lmo1883 (chiA), but not on a gene encoding a putative chitin binding protein (lmo2467). The chiB and chiA genes are phylogenetically related to various well-characterized chitinases. The potential biological implications of chitinolytic activity of Listeria are discussed.

摘要

李斯特菌属,包括食源性病原体单核细胞增生李斯特菌,是环境中普遍存在的微生物,因此很难从食品加工厂中排除。导致它们在自然界中繁殖和存活的因素尚未完全了解,但分解代谢各种碳水化合物的能力可能非常重要。自然界中碳和氮的一个主要来源是几丁质,它是一种不溶性的线性β-1,4-连接的N-乙酰葡糖胺(GlcNAc)聚合物。几丁质存在于真菌和某些藻类的细胞壁、节肢动物的角质层以及软体动物的外壳和齿舌中。在本研究中,我们证明了单核细胞增生李斯特菌和其他李斯特菌属能够水解α-几丁质。几丁质分解活性受到培养基中葡萄糖的抑制,这表明几丁质分解活性受到分解代谢物阻遏。活性也受温度调节,在30℃时比在37℃时更高。在单核细胞增生李斯特菌EGD中,几丁质水解依赖于编码两种几丁质酶的基因,即lmo0105(chiB)和lmo1883(chiA),但不依赖于编码假定的几丁质结合蛋白的基因(lmo2467)。chiB和chiA基因在系统发育上与各种已充分表征的几丁质酶相关。文中讨论了李斯特菌几丁质分解活性的潜在生物学意义。

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