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蛋白质合成是大肠杆菌K1体内多聚唾液酸荚膜合成激活所必需的。

Protein synthesis is required for in vivo activation of polysialic acid capsule synthesis in Escherichia coli K1.

作者信息

Whitfield C, Vimr E R, Costerton J W, Troy F A

出版信息

J Bacteriol. 1984 Jul;159(1):321-8. doi: 10.1128/jb.159.1.321-328.1984.

Abstract

The kinetics of in vivo expression of the polysialosyl (K1) capsular antigen in Escherichia coli has been studied. Growth of E. coli K1 strains at 15 degrees C prevents K1 polysaccharide synthesis (F. A. Troy and M. A. McCloskey, J. Biol. Chem. 254:7377-7387, 1979). Synthesis is reactivated in cells grown at 15 degrees C after upshift to 37 degrees C. The early expression and resultant morphology of K1 capsular antigen was monitored in temperature upshift experiments by using electron microscopy. Morphological stabilization of the capsule was achieved by treatment of cells with an antiserum specific for the alpha, 2-8-linked polysialosyl antigen. The kinetics of K1 capsule expression in growing cells was measured by bacteriophage adsorption with phage K1F, which required the K1 capsule for binding. The results of temperature upshift experiments showed that capsule first appeared on the cell surface after 10 min. Subsequent bacteriophage binding increased linearly with time until a fully encapsulated state was reached 45 min after upshift. The initiation of K1 capsule appearance was dependent on protein synthesis and the addition of chloramphenicol before temperature upshift prevented any expression of the K1 antigen. Chloramphenicol reduced the rate of K1 synthesis when added after temperature upshift. We conclude from these results that protein synthesis is a prerequisite for activation of capsule expression in vivo, but not for subsequent elongation of polysialosyl chains.

摘要

已对大肠杆菌中多聚唾液酸(K1)荚膜抗原的体内表达动力学进行了研究。大肠杆菌K1菌株在15℃下生长会阻止K1多糖的合成(F. A. Troy和M. A. McCloskey,《生物化学杂志》254:7377 - 7387,1979年)。在15℃下生长的细胞在温度升至37℃后,合成会重新激活。在温度上升实验中,通过电子显微镜监测K1荚膜抗原的早期表达及由此产生的形态。通过用针对α,2 - 8连接的多聚唾液酸抗原的抗血清处理细胞来实现荚膜的形态稳定。用噬菌体K1F进行噬菌体吸附来测量生长细胞中K1荚膜表达的动力学,噬菌体K1F需要K1荚膜才能结合。温度上升实验的结果表明,荚膜在温度上升10分钟后首次出现在细胞表面。随后噬菌体结合随时间呈线性增加,直到温度上升45分钟后达到完全包被状态。K1荚膜出现的起始依赖于蛋白质合成,在温度上升前添加氯霉素可阻止K1抗原的任何表达。温度上升后添加氯霉素会降低K1合成的速率。从这些结果我们得出结论,蛋白质合成是体内激活荚膜表达的先决条件,但不是随后多聚唾液酸链延长的先决条件。

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