首页> 美国卫生研究院文献>Journal of Bacteriology >Interaction with lectins and differential wheat germ agglutinin binding of pyocin 103-sensitive and -resistant Neisseria gonorrhoeae.
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Interaction with lectins and differential wheat germ agglutinin binding of pyocin 103-sensitive and -resistant Neisseria gonorrhoeae.

机译:与凝集素的相互作用以及对霉素103敏感和耐药的淋病奈瑟氏球菌的小麦胚芽凝集素的差异结合。

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摘要

Strains of Neisseria gonorrhoeae were treated with pyocin 611 131 (pyocin 103) from Pseudomonas aeruginosa PA103, and isogenic resistant variants were isolated. The interaction of pyocin-sensitive and isogenic pyocin-resistant strains with wheat germ agglutinin (WGA) agglutinated all pyocin-sensitive, but not pyocin-resistant, strains. Binding of WGA to three pyocin-sensitive strains and their isogenic pyocin-resistant variants was examined quantitatively by using fluorescein-conjugated lectin. Pyocin-resistant strains maximally bound one-third to one-eighth the quantity of WGA bound by isogenic-sensitive strains. Linear Scatchard plots revealed homogeneous WGA-binding sites on three pyocin-sensitive and one pyocin-resistant strains. Biphasic Scatchard plots, obtained with two pyocin-resistant strains, show that WGA-binding sites in these strains are heterogeneous. The number of WGA-binding sites for pyocin-sensitive organisms ranged from 8 x 10(5) to 1 x 10(6) sites per coccus and from 1 x 10(5) to 3 x 10(5) sites per coccus for pyocin-resistant strains. The apparent association constant for WGA binding to pyocin-sensitive strains ranged from 3 x 10(6) to 6 x 10(6) liters/mol and from 6 x 10(6) to 1 x 10(7) liters/mol for pyocin-resistant strains. Gonococcal lipopolysaccharide was shown to serve as the pyocin 103 receptor by inhibition of pyocin activity. Lipopolysaccharide from a pyocin 103-resistant strain was not able to inhibit pyocin 103 activity. Pyocin 103 resistance was correlated with a structural alteration involving N-acetylglucosamine residues in gonococcal lipopolysaccharide. Based on interactions with wheat germ, soybean, and ricin lectins, a model of lipopolysaccharide structure in N. gonorrhoeae is presented.
机译:用来自铜绿假单胞菌PA103的脓菌素611131(脓菌素103)处理淋病奈瑟氏球菌的菌株,并分离出同基因抗性变体。耐霉菌素和同基因型耐霉素菌素菌株与小麦胚芽凝集素(WGA)的相互作用使所有耐霉素菌素但不耐霉菌素的菌株凝集。通过使用荧光素结合的凝集素,定量检查了WGA与三种对霉素敏感的菌株及其耐同基因异霉素的变体的结合。抗霉素的菌株最大结合的量是等基因敏感菌株结合的WGA量的三分之一至八分之一。线性Scatchard图显示了在3种对Pyocin敏感和1对Pyocin耐药的菌株上均一的WGA结合位点。用两个耐霉素的菌株获得的双相Scatchard图表明,这些菌株中的WGA结合位点是异质的。球菌敏感菌的WGA结合位点的数量范围从每个球菌8 x 10(5)到1 x 10(6)个位点,对于每个球菌来说从Wc结合位点的范围从1 x 10(5)到3 x 10(5)个位点抗性菌株。 WGA结合到对霉素敏感的菌株上的表观缔合常数在3 x 10(6)到6 x 10(6)升/ mol的范围内,而在6 x 10(6)到1 x 10(7)升/ mol的范围内抗性菌株。淋球菌脂多糖显示出通过抑制霉素的活性而成为霉素103的受体。来自对霉素103抗性的菌株的脂多糖不能抑制霉素103的活性。霉素103的抗性与涉及淋球菌脂多糖中的N-乙酰氨基葡糖残基的结构改变有关。基于与小麦胚芽,大豆和蓖麻毒素凝集素的相互作用,建立了淋病奈瑟氏球菌中脂多糖结构的模型。

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