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出芽过程中表面的超微结构研究。

Ultrastructural Study of Surface During Budding Events.

作者信息

Araújo Glauber R de S, Alcantara Carolina de L, Rodrigues Noêmia, de Souza Wanderley, Pontes Bruno, Frases Susana

机构信息

Laboratório de Ultraestrutura Celular Hertha Meyer, Instituto de Biofísica Carlos Chagas Filho, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.

Laboratório de Biofísica de Fungos, Instituto de Biofísica Carlos Chagas Filho, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.

出版信息

Front Microbiol. 2021 Mar 1;12:609244. doi: 10.3389/fmicb.2021.609244. eCollection 2021.

Abstract

is a fungal pathogen that causes life-threatening infections in immunocompromised individuals. It is surrounded by three concentric structures that separate the cell from the extracellular space: the plasma membrane, the cell wall and the polysaccharide (PS) capsule. Although several studies have revealed the chemical composition of these structures, little is known about their ultrastructural organization and remodeling during budding events. Here, by combining the latest and most accurate light and electron microscopy techniques, we describe the morphological remodeling that occurs among the capsule, cell wall and plasma membrane during budding in . Our results show that the cell wall deforms to generate a specialized region at one of the cell's poles. This region subsequently begins to break into layers that are slightly separated from each other and with thick tips. We also observe a reorganization of the capsular PS around the specialized regions. While daughter cells present their PS fibers aligned in the direction of budding, mother cells show a similar pattern but in the opposite direction. Also, daughter cells form multilamellar membrane structures covering the continuous opening between both cells. Together, our findings provide compelling ultrastructural evidence for surface remodeling during budding, which may have important implications for future studies exploring these remodeled specialized regions as drug-targets against cryptococcosis.

摘要

是一种真菌病原体,可在免疫功能低下的个体中引起危及生命的感染。它被三个同心结构包围,这些结构将细胞与细胞外空间分隔开:质膜、细胞壁和多糖(PS)荚膜。尽管多项研究揭示了这些结构的化学成分,但对于它们在出芽过程中的超微结构组织和重塑却知之甚少。在这里,通过结合最新、最精确的光学和电子显微镜技术,我们描述了在出芽过程中荚膜、细胞壁和质膜之间发生的形态重塑。我们的结果表明,细胞壁变形以在细胞的一个极点处产生一个特殊区域。该区域随后开始分裂成彼此略有分离且尖端较厚的层。我们还观察到特殊区域周围荚膜PS的重新组织。虽然子细胞的PS纤维沿出芽方向排列,但母细胞呈现出类似的模式,但方向相反。此外,子细胞形成多层膜结构,覆盖两个细胞之间的连续开口。总之,我们的发现为出芽过程中的表面重塑提供了令人信服的超微结构证据,这可能对未来探索这些重塑的特殊区域作为抗隐球菌病药物靶点的研究具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7780/7957021/c82ad83ab0fb/fmicb-12-609244-g001.jpg

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