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几丁质样分子与新型隐球菌葡糖醛酸木甘露聚糖结合,形成一种具有未知特性的聚糖复合物。

Chitin-like molecules associate with Cryptococcus neoformans glucuronoxylomannan to form a glycan complex with previously unknown properties.

作者信息

Ramos Caroline L, Fonseca Fernanda L, Rodrigues Jessica, Guimarães Allan J, Cinelli Leonardo P, Miranda Kildare, Nimrichter Leonardo, Casadevall Arturo, Travassos Luiz R, Rodrigues Marcio L

机构信息

Instituto de Microbiologia Professor Paulo de Góes, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.

出版信息

Eukaryot Cell. 2012 Sep;11(9):1086-94. doi: 10.1128/EC.00001-12. Epub 2012 May 4.

DOI:10.1128/EC.00001-12
PMID:22562469
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3445980/
Abstract

In prior studies, we demonstrated that glucuronoxylomannan (GXM), the major capsular polysaccharide of the fungal pathogen Cryptococcus neoformans, interacts with chitin oligomers at the cell wall-capsule interface. The structural determinants regulating these carbohydrate-carbohydrate interactions, as well as the functions of these structures, have remained unknown. In this study, we demonstrate that glycan complexes composed of chitooligomers and GXM are formed during fungal growth and macrophage infection by C. neoformans. To investigate the required determinants for the assembly of chitin-GXM complexes, we developed a quantitative scanning electron microscopy-based method using different polysaccharide samples as inhibitors of the interaction of chitin with GXM. This assay revealed that chitin-GXM association involves noncovalent bonds and large GXM fibers and depends on the N-acetyl amino group of chitin. Carboxyl and O-acetyl groups of GXM are not required for polysaccharide-polysaccharide interactions. Glycan complex structures composed of cryptococcal GXM and chitin-derived oligomers were tested for their ability to induce pulmonary cytokines in mice. They were significantly more efficient than either GXM or chitin oligomers alone in inducing the production of lung interleukin 10 (IL-10), IL-17, and tumor necrosis factor alpha (TNF-α). These results indicate that association of chitin-derived structures with GXM through their N-acetyl amino groups generates glycan complexes with previously unknown properties.

摘要

在先前的研究中,我们证明了葡糖醛酸木甘露聚糖(GXM),即真菌病原体新型隐球菌的主要荚膜多糖,在细胞壁 - 荚膜界面与几丁质寡聚体相互作用。调节这些碳水化合物 - 碳水化合物相互作用的结构决定因素以及这些结构的功能仍然未知。在本研究中,我们证明了由几丁质寡聚体和GXM组成的聚糖复合物在新型隐球菌的真菌生长和巨噬细胞感染过程中形成。为了研究几丁质 - GXM复合物组装所需的决定因素,我们开发了一种基于定量扫描电子显微镜的方法,使用不同的多糖样品作为几丁质与GXM相互作用的抑制剂。该测定表明,几丁质 - GXM结合涉及非共价键和大的GXM纤维,并且取决于几丁质的N - 乙酰氨基。GXM的羧基和O - 乙酰基对于多糖 - 多糖相互作用不是必需的。测试了由新型隐球菌GXM和几丁质衍生的寡聚体组成的聚糖复合物诱导小鼠肺细胞因子的能力。它们在诱导肺白细胞介素10(IL - 10)、IL - 17和肿瘤坏死因子α(TNF -α)的产生方面比单独的GXM或几丁质寡聚体显著更有效。这些结果表明,几丁质衍生的结构通过其N - 乙酰氨基与GXM的结合产生了具有先前未知特性的聚糖复合物。

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本文引用的文献

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The chitin connection.几丁质的连接。
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In vitro measurement of phagocytosis and killing of Cryptococcus neoformans by macrophages.巨噬细胞对新型隐球菌吞噬作用及杀伤作用的体外测定
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Chronological aging is associated with biophysical and chemical changes in the capsule of Cryptococcus neoformans.随着时间的推移,新型隐球菌荚膜会发生生物物理和化学变化。
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Glucuronoxylomannan, galactoxylomannan, and mannoprotein occupy spatially separate and discrete regions in the capsule of Cryptococcus neoformans.葡聚糖醛酸木聚糖、半乳葡聚糖和甘露蛋白在新型隐球菌荚膜中占据空间上分离且离散的区域。
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Immunomodulatory effects of serotype B glucuronoxylomannan from Cryptococcus gattii correlate with polysaccharide diameter.荚膜组织胞浆菌 B 型葡聚糖的免疫调节作用与其多糖直径相关。
Infect Immun. 2010 Sep;78(9):3861-70. doi: 10.1128/IAI.00111-10. Epub 2010 Jun 14.
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KRE genes are required for beta-1,6-glucan synthesis, maintenance of capsule architecture and cell wall protein anchoring in Cryptococcus neoformans.KRE 基因是新型隐球菌β-1,6-葡聚糖合成、维持荚膜结构和细胞壁蛋白锚定所必需的。
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A specific color reaction for glucuronic acid.葡萄糖醛酸的一种特异性颜色反应。
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