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首页> 外文期刊>Infection and immunity >Surface Structure Characterization of Aspergillus fumigatus Conidia Mutated in the Melanin Synthesis Pathway and Their Human Cellular Immune Response
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Surface Structure Characterization of Aspergillus fumigatus Conidia Mutated in the Melanin Synthesis Pathway and Their Human Cellular Immune Response

机译:黑色素合成途径中突变的烟曲霉分生孢子的表面结构表征及其对人体细胞的免疫反应

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In Aspergillus fumigatus, the conidial surface contains dihydroxynaphthalene (DHN)-melanin. Six-clustered gene products have been identified that mediate sequential catalysis of DHN-melanin biosynthesis. Melanin thus produced is known to be a virulence factor, protecting the fungus from the host defense mechanisms. In the present study, individual deletion of the genes involved in the initial three steps of melanin biosynthesis resulted in an altered conidial surface with masked surface rodlet layer, leaky cell wall allowing the deposition of proteins on the cell surface and exposing the otherwise-masked cell wall polysaccharides at the surface. Melanin as such was immunologically inert; however, deletion mutant conidia with modified surfaces could activate human dendritic cells and the subsequent cytokine production in contrast to the wild-type conidia. Cell surface defects were rectified in the conidia mutated in downstream melanin biosynthetic pathway, and maximum immune inertness was observed upon synthesis of vermelone onward. These observations suggest that although melanin as such is an immunologically inert material, it confers virulence by facilitating proper formation of the A. fumigatus conidial surface.
机译:在烟曲霉中,分生孢子表面含有二羟基萘(DHN)-黑色素。已经确定了六簇基因产物,它们介导了DHN-黑色素生物合成的顺序催化。已知由此产生的黑色素是一种毒力因子,可以保护真菌免受宿主防御机制的侵害。在本研究中,涉及黑色素生物合成的最初三个步骤的基因的个别缺失导致分生孢子表面发生了变化,其分生孢子表面被掩盖了表面小杆层,细胞壁渗漏使蛋白质沉积在细胞表面并暴露了被掩盖的细胞壁上的多糖。黑色素本身是免疫惰性的。然而,与野生型分生孢子相比,具有表面修饰的突变突变体分生孢子可以激活人树突状细胞并随后产生细胞因子。细胞表面缺陷在下游黑色素生物合成途径中突变的分生孢子中得以纠正,并且在合成Vermelone之后观察到最大的免疫惰性。这些观察结果表明,尽管黑色素本身是一种免疫惰性材料,但它通过促进烟曲霉分生孢子表面的适当形成而赋予了毒性。

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