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A novel galectin-like domain from Toxoplasma gondii micronemal protein 1 assists the folding, assembly, and transport of a cell adhesion complex

机译:弓形虫微nemalmal蛋白1的新型galectin样域有助于细胞粘附复合物的折叠,组装和运输

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摘要

Immediately prior to invasion Toxoplasma gondii tachyzoites release a large number of micronemal proteins (TgMICs) that participate in host cell attachment and penetration. The TgMIC4-MIC1-MIC6 complex was the first to be identified in T. gondii and has been recently shown to be critical in invasion. This study establishes that the N-terminal thrombospondin type I repeat-like domains (TSR1-like) from TgMIC1 function as an independent adhesin as well as promoting association with TgMIC4. Using the newly solved three-dimensional structure of the C-terminal domain of TgMIC1 we have identified a novel Galectin-like fold that does not possess carbohydrate binding properties and redefines the architecture of TgMIC1. Instead, the TgMIC1 Galectin-like domain interacts and stabilizes TgMIC6, which provides the basis for a highly specific quality control mechanism for successful exit from the early secretory compartments and for subsequent trafficking of the complex to the micronemes.
机译:刚侵染之前,刚地弓形虫速殖子释放出大量的微nemalmal蛋白(TgMIC),它们参与宿主细胞的附着和渗透。 TgMIC4-MIC1-MIC6复合物是最早在弓形虫中鉴定出来的,最近被证明对入侵至关重要。这项研究建立了来自TgMIC1的N端I型血小板反应蛋白I重复样结构域(TSR1-like),起着独立的粘附素的作用,并促进了与TgMIC4的结合。使用新近解决的TgMIC1 C端结构域的三维结构,我们已经确定了不具有碳水化合物结合特性的新型Galectin样折叠,并重新定义了TgMIC1的结构。取而代之的是,TgMIC1 Galectin样结构域相互作用并稳定TgMIC6,这为高度特异性的质量控制机制提供了基础,该机制可成功地从早期分泌区室中退出,并随后将复合物运输到微尼姆。

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