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首页> 外文期刊>Infection and immunity >A Parasitic Phase-Specific Adhesin of Coccidioides immitis Contributes to the Virulence of This Respiratory Fungal Pathogen
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A Parasitic Phase-Specific Adhesin of Coccidioides immitis Contributes to the Virulence of This Respiratory Fungal Pathogen

机译:球虫病的寄生虫特定阶段黏附素有助于这种呼吸道真菌病原体的毒力。

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We report the isolation of a Coccidioides immitis gene (SOWgp) which encodes an immunodominant, spherule outer wall glycoprotein that is presented as a component of a parasitic phase-specific, membranous layer at the cell surface. The open reading frame of the gene from C. immitis isolate C735 translates a 422-amino-acid (aa) polypeptide that contains 6 copies of a 41- to 47-residue tandem repeat enriched in proline (20.4 mol%) and aspartate (19.7%). Two additional isolates of C. immitis produce SOWgps of different molecular sizes (328 and 375 aa) and show a corresponding difference in the number of tandem repeats (four and five, respectively). The accurate molecular sizes of these proline-rich antigens, as determined by surface-enhanced laser desorption/ionization mass spectrometry, are comparable to the predicted sizes from the translated protein sequences rather than the estimated sizes based on gel-electrophoretic separation. The results of Northern hybridization confirmed that SOWgp expression is parasitic phase specific, and immunoblot studies showed that elevated levels of production of this antigen occurred during early spherule development. The recombinant polypeptide (rSOWp) was shown to bind to mammalian extracellular matrix (ECM) proteins in an in vitro assay (laminin > fibronectin > collagen type IV), suggesting that the parasitic cell surface antigen may function as an adhesin. Deletion of the SOWgp gene by using a targeted gene replacement strategy resulted in partial loss of the ability of intact spherules to bind to ECM proteins and a significant reduction in virulence of the mutant strain. The wild-type gene was restored in the mutant by homologous recombination, and the revertant strain was shown to be as virulent as the parental isolate in our murine model of coccidioidomycosis. The parasitic cell surface glycoprotein encoded by the SOWgp gene appears to function as an adhesin and contributes to the virulence of C. immitis.
机译:我们报告了 Coccidioides免疫炎基因( SOWgp )的分离,该基因编码一种免疫优势的球小球外壁糖蛋白,该蛋白呈现为寄生相特异的膜层的一部分在细胞表面。 C基因的开放阅读框。 Immitis 分离物C735可翻译422个氨基酸(aa)多肽,其中包含6个拷贝的41-47残基串联重复序列,富含脯氨酸(20.4 mol%)和天冬氨酸(19.7%)。 C的另外两个分离株。炎症会产生不同分子大小(328和375aa)的SOWgps,并在串联重复数(分别为四个和五个)上显示出相应的差异。通过表面增强的激光解吸/电离质谱法确定的这些富含脯氨酸的抗原的准确分子大小与翻译蛋白质序列的预测大小相当,而不是基于凝胶电泳分离的估计大小。 Northern杂交的结果证实了 SOWgp 表达是寄生相特异性的,免疫印迹研究表明,这种早期球体发育过程中该抗原的产生水平升高。重组多肽(rSOWp)在体外测定(laminin>纤连蛋白> IV型胶原)中显示与哺乳动物细胞外基质(ECM)蛋白结合,这表明寄生细胞表面抗原可能起粘附素的作用。通过使用有针对性的基因替换策略删除 SOWgp 基因,会导致完整小球与ECM蛋白结合的能力部分丧失,并且突变株的毒力显着降低。通过同源重组在突变体中恢复了野生型基因,并且在我们的球孢子菌病鼠模型中,该回复株显示出与亲本分离株一样的毒力。由 SOWgp 基因编码的寄生细胞表面糖蛋白似乎起着粘附素的作用,并促进了 C的毒性。炎症。

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