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Early molecular-recognition events in the synthesis and export of group 2 capsular polysaccharides

机译:早期分子识别事件在2组荚膜多糖的合成和出口中

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The outer membrane (OM) of almost all Gram-negative bacteria is composed of phospholipids, lipopolysaccharide, proteins and capsular or loosely adherent polysaccharides that together mediate cellular interactions with diverse environments. Most OM components are synthesized intracellularly or at the inner membrane (IM) and thus require an export mechanism. This mini-review focuses on recent progress in understanding how synthesis of one kind of capsular polysaccharide (group 2) is coupled to the export apparatus located in the IM and spanning the periplasmic space, thus providing a transport channel to the cell surface. Although the model system for these investigations is the medically important extraintestinal pathogen Escherichia coli K1 and its polysialic acid capsule, the conclusions are general for other group 2 and group 2-like polysaccharides synthesized by many different bacterial species.
机译:几乎所有革兰氏阴性细菌的外膜(OM)由磷脂,脂多糖,蛋白质和荚膜或松散的粘附多糖组成,它们一起介导与各种环境的细胞相互作用。大多数OM组分以细胞内或内膜(IM)合成,因此需要出口机制。该迷你审查重点介绍了解了解如何合成一种胶囊多糖(第2组)耦合到位于IM中的出口装置并跨越周质空间的进展方面的进展,从而为电池表面提供传送通道。虽然这些研究的模型系统是医学上重要的外含有蛋白质病原体大肠杆菌K1及其多核酸胶囊,但结论是由许多不同细菌物种合成的其他组2和2种样多糖的结论。

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