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Putative mechanisms and biological role of coccoid form formation inCampylobacter jejuni

机译:推导的球形蛋白质形成的推测机制和生物学作用。空肠弯曲菌

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摘要

In certain conditions Campylobacter jejuni cells are capable of changing their cell shape from a typically spiral to a coccoid form (CF). By similarity to other bacteria, the latter was initially considered to be a viable but non-culturable form capable of survival in unfavourable conditions. However, subsequent studies with C. jejuni and closely related bacteria Helicobacter pylori suggested that CF represents a non-viable, degenerative form. Until now, the issue on whether the CF of C. jejuni is viable and infective is highly controversial. Despite some preliminary experiments on characterization of CF cells, neither biochemical mechanisms nor genetic determinants involved in C. jejuni cell shape changes have been characterized. In this review, we highlight known molecular mechanisms and genes involved in CF formation in other bacteria. Since orthologous genes are also present in C. jejuni, we suggest that CF formation in these bacteria is also a regulated and genetically determined process. A possible significance of CF in the lifestyle of this important bacterial pathogen is discussed.
机译:在某些条件下,空肠弯曲菌细胞能够将其细胞形状从典型的螺旋形改变为球状(CF)形。通过与其他细菌的相似性,后者最初被认为是能够在不利条件下存活的可行但不可培养的形式。但是,随后对空肠弯曲杆菌和密切相关的幽门螺杆菌细菌的研究表明,CF代表一种不可行的变性形式。迄今为止,关于空肠弯曲杆菌的CF是否可行和具有感染性的问题一直存在争议。尽管有一些关于CF细胞表征的初步实验,但尚未描述空肠弯曲杆菌细胞形状变化涉及的生化机制或遗传决定因素。在这篇综述中,我们重点介绍了与其他细菌中CF形成有关的已知分子机制和基因。由于空肠弯曲杆菌中也存在直系同源基因,因此我们建议这些细菌中的CF形成也是一个受调节的基因决定的过程。讨论了CF在这种重要细菌病原体生活方式中的可能意义。

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