首页> 美国卫生研究院文献>Journal of Bacteriology >Contribution of Trimeric Autotransporter C-Terminal Domains of Oligomeric Coiled-Coil Adhesin (Oca) Family Members YadA UspA1 EibA and Hia to Translocation of the YadA Passenger Domain and Virulence of Yersinia enterocolitica
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Contribution of Trimeric Autotransporter C-Terminal Domains of Oligomeric Coiled-Coil Adhesin (Oca) Family Members YadA UspA1 EibA and Hia to Translocation of the YadA Passenger Domain and Virulence of Yersinia enterocolitica

机译:寡聚螺旋线圈粘附素(Oca)家族成员YadAUspA1EibA和Hia的三聚体自转运蛋白C末端结构域对YadA客运结构域移位和小肠结肠炎耶尔森氏菌毒性的贡献。

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摘要

The Oca family is a novel class of autotransporter-adhesins with highest structural similarity in their C-terminal transmembrane region, which supposedly builds a beta-barrel pore in the outer membrane (OM). The prototype of the Oca family is YadA, an adhesin of Yersinia enterocolitica and Yersinia pseudotuberculosis. YadA forms a homotrimeric lollipop-like structure on the bacterial surface. The C-terminal regions of three YadA monomers form a barrel in the OM and translocate the trimeric N-terminal passenger domain, consisting of stalk, neck, and head region to the exterior. To elucidate the structural and functional role of the C-terminal translocator domain (TLD) and to assess its promiscuous capability with respect to transport of related passenger domains, we constructed chimeric YadA proteins, which consist of the N-terminal YadA passenger domain and C-terminal TLDs of Oca family members UspA1 (Moraxella catarrhalis), EibA (Escherichia coli), and Hia (Haemophilus influenzae). These constructs were expressed in Y. enterocolitica and compared for OM localization, surface exposure, oligomerization, adhesion properties, serum resistance, and mouse virulence. We demonstrate that all chimeric YadA proteins translocated the YadA passenger domain across the OM. Y. enterocolitica strains producing YadA chimeras or wild-type YadA showed comparable binding to collagen and epithelial cells. However, strains producing YadA chimeras were attenuated in serum resistance and mouse virulence. These results demonstrate for the first time that TLDs of Oca proteins of different origin are efficient translocators of the YadA passenger domain and that the cognate TLD of YadA is essential for bacterial survival in human serum and mouse virulence.
机译:Oca家族是一类新型的自转运粘附素,在其C端跨膜区域具有最高的结构相似性,据推测在外膜(OM)中会形成一个β桶孔。 Oca家族的原型是YadA,这是一种小肠结肠炎耶尔森氏菌和假结核耶尔森氏菌的粘附素。 YadA在细菌表面形成同源三聚棒棒糖样结构。三种YadA单体的C末端区域在OM中形成一个桶形结构,并将三聚体N末端过客结构域(由茎,颈部和头部区域组成)移位到外部。为了阐明C末端易位域(TLD)的结构和功能作用,并评估其在运输相关客运域方面的混杂能力,我们构建了嵌合的YadA蛋白,该蛋白由N末端YadA客运域和C组成Oca家族成员UspA1(卡他莫拉氏菌),EibA(大肠杆菌)和Hia(流感嗜血杆菌)的末端TLD。这些构建体在小肠结肠炎耶尔森氏菌中表达,并比较了OM定位,表面暴露,寡聚,粘附特性,血清抗性和小鼠毒力。我们证明所有嵌合YadA蛋白质跨OM转移YadA乘客域。产生YadA嵌合体或野生型YadA的小肠结肠炎耶尔森氏菌菌株与胶原蛋白和上皮细胞具有相当的结合力。但是,产生YadA嵌合体的菌株的血清抵抗力和小鼠毒力减弱。这些结果首次证明,不同来源的Oca蛋白的TLD是YadA客运域的有效转运子,并且YadA的同源TLD对于细菌在人血清和小鼠毒力中的存活至关重要。

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