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Genome Sequence and Analysis of the Oral Bacterium Fusobacterium nucleatum Strain ATCC 25586

机译:口腔细菌核纤梭菌ATCC 25586的基因组序列与分析

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摘要

We present a complete DNA sequence and metabolic analysis of the dominant oral bacterium Fusobacterium nucleatum. Although not considered a major dental pathogen on its own, this anaerobe facilitates the aggregation and establishment of several other species including the dental pathogens Porphyromonas gingivalis and Bacteroides forsythus. The F. nucleatum strain ATCC 25586 genome was assembled from shotgun sequences and analyzed using the ERGO bioinformatics suite (). The genome contains 2.17 Mb encoding 2,067 open reading frames, organized on a single circular chromosome with 27% GC content. Despite its taxonomic position among the gram-negative bacteria, several features of its core metabolism are similar to that of gram-positive Clostridium spp., Enterococcus spp., and Lactococcus spp. The genome analysis has revealed several key aspects of the pathways of organic acid, amino acid, carbohydrate, and lipid metabolism. Nine very-high-molecular-weight outer membrane proteins are predicted from the sequence, none of which has been reported in the literature. More than 137 transporters for the uptake of a variety of substrates such as peptides, sugars, metal ions, and cofactors have been identified. Biosynthetic pathways exist for only three amino acids: glutamate, aspartate, and asparagine. The remaining amino acids are imported as such or as di- or oligopeptides that are subsequently degraded in the cytoplasm. A principal source of energy appears to be the fermentation of glutamate to butyrate. Additionally, desulfuration of cysteine and methionine yields ammonia, H2S, methyl mercaptan, and butyrate, which are capable of arresting fibroblast growth, thus preventing wound healing and aiding penetration of the gingival epithelium. The metabolic capabilities of F. nucleatum revealed by its genome are therefore consistent with its specialized niche in the mouth.
机译:我们提出了一个完整的DNA序列和优势口腔细菌核纤梭菌的代谢分析。尽管该厌氧菌本身并不被认为是主要的牙科病原体,但它促进了其他几种物种的聚集和建立,其中包括牙龈卟啉单胞菌和连翘细菌。从shot弹枪序列中组装了核镰刀菌ATCC 25586基因组,并使用ERGO生物信息学套件进行了分析。基因组包含编码2.067个开放阅读框的2.17 Mb,这些阅读框组织在单个环形染色体上,GC含量为27%。尽管其在革兰氏阴性细菌中的分类位置,其核心代谢的一些特征类似于革兰氏阳性梭菌,肠球菌和乳球菌。基因组分析揭示了有机酸,氨基酸,碳水化合物和脂质代谢途径的几个关键方面。从该序列预测了九种超高分子量的外膜蛋白,在文献中没有报道。现已鉴定出137种以上的转运蛋白,可吸收各种底物,例如肽,糖,金属离子和辅因子。仅三种氨基酸存在生物合成途径:谷氨酸,天冬氨酸和天冬酰胺。其余的氨基酸原样或作为二肽或寡肽输入,随后在细胞质中降解。能量的主要来源似乎是谷氨酸发酵成丁酸酯。另外,半胱氨酸和蛋氨酸的脱硫产生氨,H 2 S,甲硫醇和丁酸酯,它们能够阻止成纤维细胞生长,从而防止伤口愈合并帮助牙龈上皮的渗透。因此,由其基因组揭示的核镰刀菌的代谢能力与其在口腔中的特殊生态位相一致。

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