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DegP Initiates Regulated Processing of Filamentous Hemagglutinin in Bordetella bronchiseptica

机译:Degp在<命名含量含量型=“属型”> Bordetella Bronchiseptica 中,启动丝状血凝素的调节加工

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ABSTRACT Filamentous hemagglutinin (FhaB) is a critical virulence factor for both Bordetella pertussis , the causal agent of whooping cough, and the closely related species Bordetella bronchiseptica . FhaB is an adhesin, suppresses inflammatory cytokine production, and protects against phagocytic cell clearance during infection. Regulated degradation of the FhaB C-terminal prodomain is required to establish a persistent infection in mice. Two proteases, CtpA in the periplasm and SphB1 on the bacterial surface, are known to mediate FhaB processing, and we recently determined that CtpA functions before, and controls the FhaB cleavage site of, SphB1. However, the data indicate that another periplasmic protease must initiate degradation of the prodomain by removing a portion of the FhaB C terminus that inhibits CtpA-mediated degradation. Using a candidate approach, we identified DegP as the initiating protease. Deletion of degP or substitution of its predicted catalytic residue resulted in reduced creation of FHA′ (the main product of FhaB processing) and an accumulation of full-length FhaB in whole-cell lysates. Also, FHA′ was no longer released into culture supernatants in degP mutants. Alterations of the FhaB C terminus that relieve inhibition of CtpA abrogate the need for DegP, consistent with DegP functioning prior to CtpA in the processing pathway. DegP is not required for secretion of FhaB through FhaC or for adherence of the bacteria to host cells, indicating that DegP acts primarily as a protease and not a chaperone for FhaB in B. bronchiseptica . Our results highlight a role for HtrA family proteases in activation of virulence factors in pathogenic bacteria.
机译:摘要丝状血凝素(FHAB)是Bordetella Pertussis的临界毒力因子,霍普宁咳嗽的因果因子,以及密切相关的物种Bordetella Bronchiseptica。 FHAB是一种粘合剂,抑制炎症细胞因子产生,并在感染期间保护吞噬细胞间隙。在小鼠中建立持续的感染需要对FHAB C末端前膜的调节降解。已知两种蛋白酶,细菌表面上的细菌表面上的SPHB1和SPHB1,并介导FHAB处理,并确定之前的CTPA功能,并控制SPHB1的FHAB切割位点。然而,数据表明,另一种周质蛋白酶必须通过除去抑制CTPA介导的降解的FHAB C末端的一部分来引发前植物的降解。使用候选方法,我们将DEGP鉴定为发起蛋白酶。缺失其预测的催化残余物的DEGP或取代导致FHA'(FHAB加工的主要产物)的产生减少,全身裂解物中全长FHAB的积累。此外,FHA'不再释放到DEGP突变体中的培养上清液中。缓解CTPA抑制CTPA的FHAB C末端的改变,该需要与加工途径中CTPA之前的DEGP功能一致。 DEGP不需要通过FHAC分泌FHAB或用于宿主细胞的粘附性,表明DEGP主要用作B.Bronchiseptica中FHAB的蛋白酶而不是蛋白质。我们的结果突出了HTRA家族蛋白酶在致病细菌中激活毒力因子的作用。

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