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Chlamydia trachomatis-host cell interactions: role of the chlamydial major outer membrane protein as an adhesin.

机译:沙眼衣原体-宿主细胞相互作用:衣原体主要外膜蛋白作为粘附素的作用。

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摘要

The major outer membrane protein (MOMP) of Chlamydia trachomatis is characterized by four symmetrically spaced variable domains (VDs I to IV) whose sequences vary among serotypes. The surface-exposed portions of these VDs contain contiguous sequences that are both serotyping determinants and in vivo target sites for neutralizing antibodies. Previous studies using surface proteolysis of C. trachomatis B implicated VDs II and IV of the MOMP of this serotype in the attachment of chlamydiae to host cells. In this study, we used monoclonal antibodies (MAbs) specific to antigenic determinants located in VDs II and IV of the MOMP of serotype B to further investigate the role of the MOMP in the attachment of chlamydiae to host cells. MABs specific to serotype- and subspecies-specific epitopes located in exposed VDs II and IV, respectively, neutralized chlamydial infectivity for hamster kidney cells by blocking chlamydial attachment. We radioiodinated these MAbs and used them to determine the number and topology of the surface-exposed VDs II and IV epitopes on chlamydial elementary bodies. VDs II and IV each comprised approximately 2.86 x 10(4) negatively charged sites and were in proximity on the chlamydial cell surface. These studies suggest that the MAbs blocked chlamydial attachment by inhibiting electrostatic interactions with host cells. We examined the effects of thermal inactivation on both chlamydial attachment and conformation of the MOMP. Heat-inactivated chlamydiae failed to attach to host cells and exhibited a conformational change in an inaccessible invariant hydrophobic nonapeptide sequence located within VD IV of the MOMPs of C. trachomatis serotypes. These findings suggest that in addition to electrostatic interactions, a common hydrophobic component of the MOMP also contributes to the binding of chlamydiae to host cells. Thus, we propose that the MOMP functions as a chlamydial adhesin by promoting nonspecific (electrostatic and hydrophobic) interactions with host cells. Surface-accessible negatively charged VDs appear to be important in electrostatic binding, while the invariant region of VD IV may provide a subsurface hydrophobic depression which further promotes binding of chlamydiae to host cells through hydrophobic interactions.
机译:沙眼衣原体的主要外膜蛋白(MOMP)的特征是四个对称间隔的可变域(VD I至IV),其序列在血清型之间变化。这些VD的表面暴露部分包含连续的序列,这些序列既是血清分型的决定因素,也是体内中和抗体的靶位。先前使用沙眼衣原体B的表面蛋白水解进行的研究表明衣原体与宿主细胞的附着涉及该血清型MOMP的VD II和IV。在这项研究中,我们使用了特异性针对位于血清型B的MOMP的VD II和IV中的抗原决定簇的单克隆抗体(MAb),以进一步研究MOMP在衣原体附着于宿主细胞中的作用。分别位于暴露的VD II和IV中针对血清型和亚种特异性表位的特异性MAB通过阻断衣原体附着,中和了对仓鼠肾细胞的衣原体感染性。我们放射性碘化了这些单克隆抗体,并用它们来确定衣原体基本表面上表面暴露的VD II和IV表位的数量和拓扑。 VD II和IV分别包含大约2.86 x 10(4)个带负电荷的位点,并位于衣原体细胞表面附近。这些研究表明,单克隆抗体通过抑制与宿主细胞的静电相互作用来阻止衣原体附着。我们研究了热灭活对衣原体附着和MOMP构象的影响。热灭活的衣原体不能附着于宿主细胞,并且在位于沙眼衣原体血清型MOMP的VD IV内的不可接近的不变疏水性非肽序列中显示出构象变化。这些发现表明,除静电相互作用外,MOMP的常见疏水性成分还有助于衣原体与宿主细胞的结合。因此,我们建议MOMP通过促进与宿主细胞的非特异性(静电和疏水)相互作用,起衣原体粘附素的作用。表面可接近的带负电荷的VD在静电结合中似乎很重要,而VD IV的不变区域可能提供了一个表面下的疏水性凹陷,该凹陷进一步促进衣原体通过疏水性相互作用与宿主细胞结合。

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