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Plasminogen binding and degradation by Treponema denticola: Treponema denticola: Identification of the plasminogen binding interface on the FhbB protein

机译:Treponema Denticola的纤溶酶原结合和降解:Treponema Denticola:鉴定FHBB蛋白质上的纤溶酶原结合界面

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Summary Treponema denticola is a proteolytic‐anaerobic spirochete whose abundance in the subgingival crevice correlates with periodontal disease severity. Treponema denticola evades serum‐mediated killing through the binding of factor H ( FH ), a negative regulator of the complement system. The T.?denticola FH receptor has been identified as FhbB, an 11.4kDa immunodominant lipoprotein. Three distinct subfamilies of FhbB proteins have been delineated and designated as FhbB1, FhbB2 and FhbB3. In this study we demonstrate that all FhbB variants bind human plasminogen (Plg). Competitive binding analyses revealed that FH and Plg do not compete for binding. Binding studies with FhbB1 35405 site‐directed amino acid substitution mutants demonstrated that the interaction domains for FH and Plg on FhbB are separable. Inhibition of Plg‐FhbB binding by ε‐aminocaproic acid (a lysine analog) indicates that binding is mediated by electrostatic interactions that presumably occur with Lys binding sites contained within Plg “Kringle” domains 1, 2, 4 or 5. Similar to that demonstrated for FH , Plg can also serve as a substrate for the T.?denticola protease, dentilisin. The in vivo consequences of dentilisin‐mediated cleavage of Plg remained to be determined. The data presented demonstrate that FhbB is a multi‐functional protein that may contribute to virulence through several mechanisms including immune evasion, manipulation of the host immune response, adherence or tissue invasion.
机译:摘要Treponema牙科拉是一种蛋白水解 - 厌氧螺旋体,其丰富的潜在曲折与牙周病严重程度相关。 Treponema Denticola避免血清介导的杀伤因子H(fh)的结合,补体系统的负调节剂。 T.?denticola FH受体已被鉴定为FHBB,一种11.4KDA免疫血清蛋白。 FHBB蛋白的三个不同的亚属亚颗粒已经描绘并指定为FHBB1,FHBB2和FHBB3。在这项研究中,我们证明所有FHBB变体都结合人纤溶酶原(PLG)。竞争结合分析显示FH和PLG不会竞争结合。具有FHBB1 35405的结合研究定向氨基酸取代突变体证明FHBB上FH和PLG的相互作用域是可分离的。通过ε-氨基己酸(赖氨酸类似物)的PLG-FHBB结合的抑制表明,结合是通过静电相互作用介导的,所述静电相互作用可能发生在PLG“Kringle”域1,2,4或5中所含的Lys结合位点。类似于所示的对于FH,PLG也可以用作T.?denticola蛋白酶,牙本菌素的底物。 Dentilisin介导的PLG的介导的PLG的体内后果保持确定。提出的数据表明,FHBB是一种多功能蛋白,可能通过包括免疫逃逸,宿主免疫应答,粘附或组织侵袭的若干机制有助于毒力。

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