Department of Pathology, Albert Einstein College of Medicine, Bronx, New York, USA.
Department of Pathology, Albert Einstein College of Medicine, Bronx, New York, USA
mBio. 2020 Feb 4;11(1):e02699-19. doi: 10.1128/mBio.02699-19.
A characteristic of the latent cyst stage of is a thick cyst wall that forms underneath the membrane of the bradyzoite vacuole. Previously, our laboratory group published a proteomic analysis of purified cyst wall fragments that identified an inventory of cyst wall components. To further refine our understanding of the composition of the cyst wall, several cyst wall proteins were tagged with a promiscuous biotin ligase (BirA*), and their interacting partners were screened by streptavidin affinity purification. Within the cyst wall pulldowns, previously described cyst wall proteins, dense granule proteins, and uncharacterized hypothetical proteins were identified. Several of the newly identified hypothetical proteins were validated to be novel components of the cyst wall and tagged with BirA* to expand the model of the cyst wall interactome. Community detection of the cyst wall interactome model revealed three distinct clusters: a dense granule, a cyst matrix, and a cyst wall cluster. Characterization of several of the identified cyst wall proteins using genetic strategies revealed that MCP3 affects cyst sizes. This study provides a model of the potential protein interactions within the cyst wall and the groundwork to understand cyst wall formation. A model of the cyst wall interactome was constructed using proteins identified through BioID. The proteins within this cyst wall interactome model encompass several proteins identified in a prior characterization of the cyst wall proteome. This model provides a more comprehensive understanding of the composition of the cyst wall and may lead to insights on how the cyst wall is formed.
刚地弓形虫潜伏囊肿阶段的一个特征是在缓殖子空泡膜下形成的厚囊壁。此前,我们实验室小组发表了一项对纯化的刚地弓形虫囊壁片段的蛋白质组学分析,鉴定出了囊壁成分清单。为了进一步深入了解囊壁的组成,我们将几种囊壁蛋白标记上一种混杂的生物素连接酶(BirA*),并通过链霉亲和素亲和纯化筛选它们的相互作用伙伴。在囊壁下拉实验中,鉴定出了先前描述的囊壁蛋白、致密颗粒蛋白和未被描述的假设蛋白。新鉴定的几个假设蛋白被验证为囊壁的新成分,并被标记上 BirA*,以扩展囊壁相互作用组模型。对囊壁相互作用组模型的社区检测揭示了三个不同的簇:致密颗粒簇、囊基质簇和囊壁簇。使用遗传策略对鉴定出的几种囊壁蛋白进行特征分析表明,MCP3 影响刚地弓形虫囊大小。本研究提供了囊壁内潜在蛋白相互作用的模型,并为理解囊壁形成奠定了基础。使用 BioID 鉴定的蛋白构建了囊壁相互作用组模型。该囊壁相互作用组模型中的蛋白包含在先前囊壁蛋白质组学特征描述中鉴定出的几种蛋白。该模型提供了对囊壁组成的更全面理解,并可能为囊壁形成方式提供新的见解。