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新型隐球菌孢子的分离与鉴定揭示了荚膜生物合成基因在孢子生物发生中的关键作用。

Isolation and characterization of Cryptococcus neoformans spores reveal a critical role for capsule biosynthesis genes in spore biogenesis.

作者信息

Botts Michael R, Giles Steven S, Gates Marcellene A, Kozel Thomas R, Hull Christina M

机构信息

Department of Biomolecular Chemistry, School of Medicine and Public Health, University of Wisconsin, Madison, WI 53706, USA.

出版信息

Eukaryot Cell. 2009 Apr;8(4):595-605. doi: 10.1128/EC.00352-08. Epub 2009 Jan 30.

Abstract

Spores are essential particles for the survival of many organisms, both prokaryotic and eukaryotic. Among the eukaryotes, fungi have developed spores with superior resistance and dispersal properties. For the human fungal pathogens, however, relatively little is known about the role that spores play in dispersal and infection. Here we present the purification and characterization of spores from the environmental fungus Cryptococcus neoformans. For the first time, we purified spores to homogeneity and assessed their morphological, stress resistance, and surface properties. We found that spores are morphologically distinct from yeast cells and are covered with a thick spore coat. Spores are also more resistant to environmental stresses than yeast cells and display a spore-specific configuration of polysaccharides on their surfaces. Surprisingly, we found that the surface of the spore reacts with antibodies to the polysaccharide glucuronoxylomannan, the most abundant component of the polysaccharide capsule required for C. neoformans virulence. We explored the role of capsule polysaccharide in spore development by assessing spore formation in a series of acapsular strains and determined that capsule biosynthesis genes are required for proper sexual development and normal spore formation. Our findings suggest that C. neoformans spores may have an adapted cell surface that facilitates persistence in harsh environments and ultimately allows them to infect mammalian hosts.

摘要

孢子是许多原核生物和真核生物生存所必需的粒子。在真核生物中,真菌进化出了具有超强抗性和传播特性的孢子。然而,对于人类真菌病原体,人们对孢子在传播和感染中所起的作用了解相对较少。在此,我们展示了从环境真菌新生隐球菌中纯化和鉴定孢子的过程。我们首次将孢子纯化至同质,并评估了它们的形态、抗逆性和表面特性。我们发现,孢子在形态上与酵母细胞不同,并且被一层厚厚的孢子壁所覆盖。孢子对环境压力的耐受性也比酵母细胞更强,并且在其表面呈现出一种孢子特异性的多糖结构。令人惊讶的是,我们发现孢子表面会与针对多糖葡糖醛酸木甘露聚糖的抗体发生反应,葡糖醛酸木甘露聚糖是新生隐球菌毒力所需的多糖荚膜中最丰富的成分。我们通过评估一系列无荚膜菌株中的孢子形成,探索了荚膜多糖在孢子发育中的作用,并确定荚膜生物合成基因是正常有性发育和正常孢子形成所必需的。我们的研究结果表明,新生隐球菌孢子可能具有适应性的细胞表面,这有助于它们在恶劣环境中存活,并最终使其能够感染哺乳动物宿主。

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