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首页> 外文期刊>Infection and immunity >Effect of salicylate, bismuth, osmolytes, and tetracycline resistance on expression of fimbriae by Escherichia coli.
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Effect of salicylate, bismuth, osmolytes, and tetracycline resistance on expression of fimbriae by Escherichia coli.

机译:水杨酸盐,铋,渗透压和四环素抗性对大肠杆菌中菌毛表达的影响。

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Adherence of Escherichia coli is facilitated by fimbriae and several outer membrane proteins (OMPs). Hypertonic conditions, salicylate, and Mar mutations are known to reduce OmpF expression. We speculated that OMPs involved in export or assembly of fimbrial subunits might be similarly affected. To explore this hypothesis, E. coli expressing P, type 1, S, colonization factor antigen I (CFA/I), or CFA/II fimbriae was grown in the presence of salicylate, bismuth salts, NaCl, and nonfermented sugars. Tetracycline-resistant clones were derived from several P-fimbriated strains. The bacteria were tested for the ability to agglutinate erythrocytes, yeast cells, and alpha-D-Gal(-4)-beta-D-Gal-bonded latex (Gal-Gal) beads and were examined for fimbriae by electron microscopy. Hyperosmolar conditions decreased fimbrial expression for all strains. Expression of P fimbriae by pyelonephritic strains, all of which were OmpF+, was reversibly repressed by salicylate and bismuth salts. CFA strains were similarly affected. Tetracycline-resistant P-fimbriated strains were OmpF deficient, were unable to agglutinate erythrocytes and Gal-Gal beads, and lacked fimbriae as observed by electron microscopy. Strains with plasmid-encoded P-fimbrial genes did not demonstrate OmpF on polyacrylamide gel electrophoresis profiles and were not affected by salicylate. The type 1-fimbriated phenotype was not affected by salicylate or bismuth unless the strains also expressed P fimbriae. S-fimbriated strains were not affected. The mechanism by which salicylates, bismuth salts, and tetracycline resistance inhibit or modulate the expression of P fimbriae may be mediated through OmpF and other OMPs.
机译:菌毛和几种外膜蛋白(OMP)促进了大肠杆菌的粘附。高渗性疾病,水杨酸盐和Mar突变可降低OmpF表达。我们推测,参与纤维亚单位出口或组装的OMP可能受到类似的影响。为了探索这一假设,在水杨酸盐,铋盐,NaCl和非发酵糖存在下,培养表达P,1型,S型,定殖因子抗原I(CFA / I)或CFA / II菌毛的大肠杆菌。对四环素具有抗性的克隆衍生自数种P纤维化菌株。测试细菌的凝集红细胞,酵母细胞和与α-D-Gal(-4)-β-D-Gal键合的乳胶(Gal-Gal)珠的能力,并通过电子显微镜检查其菌毛。高渗条件降低了所有菌株的纤维表达。水杨酸盐和铋盐可逆性抑制肾盂肾炎菌株P菌毛的表达,所有这些均为OmpF +。 CFA菌株受到类似的影响。通过电子显微镜观察,四环素抗性P-成膜菌株是OmpF缺陷的,不能凝集红细胞和Gal-Gal珠,并且缺乏菌毛。具有质粒编码的P-膜基因的菌株在聚丙烯酰胺凝胶电泳图谱上未显示OmpF,并且不受水杨酸酯的影响。除非菌株也表达P菌毛,否则1型纤毛表型不受水杨酸盐或铋的影响。 S-丝菌菌株不受影响。水杨酸酯,铋盐和四环素抗性抑制或调节P菌毛表达的机制可能是通过OmpF和其他OMP介导的。

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