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Capnocytophaga canimorsus: A Human Pathogen Feeding at the Surface of Epithelial Cells and Phagocytes

机译:Capnocytophaga canimorsus:人类病原体喂养上皮细胞和吞噬细胞的表面

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摘要

Capnocytophaga canimorsus, a commensal bacterium of the canine oral flora, has been repeatedly isolated since 1976 from severe human infections transmitted by dog bites. Here, we show that C. canimorsus exhibits robust growth when it is in direct contact with mammalian cells, including phagocytes. This property was found to be dependent on a surface-exposed sialidase allowing C. canimorsus to utilize internal aminosugars of glycan chains from host cell glycoproteins. Although sialidase probably evolved to sustain commensalism, by releasing carbohydrates from mucosal surfaces, it also contributed to bacterial persistence in a murine infection model: the wild type, but not the sialidase-deficient mutant, grew and persisted, both when infected singly or in competition. This study reveals an example of pathogenic bacteria feeding on mammalian cells, including phagocytes by deglycosylation of host glycans, and it illustrates how the adaptation of a commensal to its ecological niche in the host, here the dog's oral cavity, contributes to being a potential pathogen.
机译:Capnocytophaga canimorsus(犬口腔菌群的一种共生细菌)自1976年以来就多次从狗咬伤传播的严重人类感染中分离出来。在这里,我们显示C. canimorsus与哺乳动物细胞(包括吞噬细胞)直接接触时会表现出强劲的生长。发现该性质取决于表面暴露的唾液酸酶,其允许犬念珠菌利用来自宿主细胞糖蛋白的聚糖链的内部氨基糖。尽管唾液酸酶可能通过从粘膜表面释放碳水化合物而进化成维持共生状态,但它在细菌感染模型中也有助于细菌的持久性:无论是单独感染还是在竞争中,野生型而非唾液酸酶缺陷型突变体都能生长并持续存在。 。这项研究揭示了一个以哺乳动物的细胞为食的致病菌的例子,其中包括通过宿主糖基的去糖基化使吞噬细胞吞噬,并且说明了共生菌如何适应宿主(这里是狗的口腔)中的生态位,从而成为潜在的病原体。 。

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