Candela Marco, Biagi Elena, Centanni Manuela, Turroni Silvia, Vici Manuela, Musiani Francesco, Vitali Beatrice, Bergmann Simone, Hammerschmidt Sven, Brigidi Patrizia
Department of Pharmaceutical Sciences, CIRB-centre for Biotechnology, University of Bologna, Italy.
Department of Experimental Pathology, University of Bologna, Italy.
Microbiology (Reading). 2009 Oct;155(Pt 10):3294-3303. doi: 10.1099/mic.0.028795-0. Epub 2009 Jul 2.
The interaction with the host plasminogen/plasmin system represents a novel component in the molecular cross-talk between bifidobacteria and human host. Here, we demonstrated that the plasminogen-binding bifidobacterial species B. longum, B. bifidum, B. breve and B. lactis share the key glycolytic enzyme enolase as a surface receptor for human plasminogen. Enolase was visualized on the cell surface of the model strain B. lactis BI07. The His-tagged recombinant protein showed a high affinity for human plasminogen, with an equilibrium dissociation constant in the nanomolar range. By site-directed mutagenesis we demonstrated that the interaction between the B. lactis BI07 enolase and human plasminogen involves an internal plasminogen-binding site homologous to that of pneumococcal enolase. According to our data, the positively charged residues Lys-251 and Lys-255, as well as the negatively charged Glu-252, of the B. lactis BI07 enolase are crucial for plasminogen binding. Acting as a human plasminogen receptor, the bifidobacterial surface enolase is suggested to play an important role in the interaction process with the host.
与宿主纤溶酶原/纤溶酶系统的相互作用是双歧杆菌与人类宿主分子串扰中的一个新组成部分。在此,我们证明了结合纤溶酶原的双歧杆菌物种长双歧杆菌、两歧双歧杆菌、短双歧杆菌和乳酸双歧杆菌共享关键糖酵解酶烯醇化酶作为人类纤溶酶原的表面受体。在模型菌株乳酸双歧杆菌BI07的细胞表面观察到了烯醇化酶。His标签重组蛋白对人类纤溶酶原表现出高亲和力,平衡解离常数在纳摩尔范围内。通过定点诱变,我们证明了乳酸双歧杆菌BI07烯醇化酶与人类纤溶酶原之间的相互作用涉及一个与肺炎球菌烯醇化酶同源的内部纤溶酶原结合位点。根据我们的数据,乳酸双歧杆菌BI07烯醇化酶带正电荷的残基Lys-251和Lys-255以及带负电荷的Glu-252对纤溶酶原结合至关重要。双歧杆菌表面烯醇化酶作为人类纤溶酶原受体,被认为在与宿主的相互作用过程中发挥重要作用。