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Identification of Two Laminin-Binding Fimbriae the Type 1 Fimbria of Salmonella enterica Serovar Typhimurium and the G Fimbria of Escherichia coli as Plasminogen Receptors

机译:鉴定两个层粘连蛋白结合菌毛肠炎沙门氏菌鼠伤寒沙门氏菌的1型菌毛和大肠杆菌的G菌毛作为纤溶酶原受体

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摘要

Escherichia coli strains carrying recombinant plasmids encoding either the type 1 fimbria of Salmonella enterica serovar Typhimurium or the G fimbria of E. coli exhibited binding of human 125I-Glu-plasminogen and enhanced the tissue-type plasminogen activator-catalyzed conversion of plasminogen to plasmin. Purified type 1 or G fimbriae similarly bound plasminogen and enhanced its activation. The binding of plasminogen did not involve the characteristic carbohydrate-binding property of the fimbriae but was inhibited at low concentrations by the lysine analog ɛ-aminocaproic acid. Because these fimbrial types bind to laminin of basement membranes (M. Kukkonen et al., Mol. Microbiol. 7:229–237, 1993; S. Saarela et al., Infect. Immun. 64:2857–2860, 1996), the results demonstrate a structural unity in the creation and targeting of bacterium-bound proteolytic plasmin activity to basement membranes.
机译:携带编码肠沙门氏菌血清型鼠伤寒沙门氏菌1型菌毛或大肠杆菌G菌毛的重组质粒的大肠埃希菌菌株与人 125 I-Glu-纤溶酶原结合并增强了组织型纤溶酶原激活剂-纤溶酶原催化转化为纤溶酶。纯化的1型或G型菌毛类似地结合了纤溶酶原,并增强了其激活。纤溶酶原的结合不涉及菌毛的特征性碳水化合物结合特性,但是在低浓度时被赖氨酸类似物α-氨基己酸抑制。由于这些纤维类型与基底膜层粘连蛋白结合(M. Kukkonen等人,Mol。Microbiol。7:229-237,1993; S。Saarela等人,Infect。Immun。64:2857-2860,1996),结果表明,在细菌结合的蛋白水解纤溶酶活性的产生和靶向基底膜方面具有结构统一性。

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