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The Giardia Median Body Protein Is a Ventral Disc Protein That Is Critical for Maintaining a Domed Disc Conformation during Attachment

机译:贾第鞭毛虫中位体蛋白是一种腹膜盘蛋白对于在附着过程中保持半球形盘构象至关重要

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摘要

Giardia has unique microtubule structures, including the ventral disc, the primary organelle of attachment to the host, and the median body, a structure of undefined function. During attachment, the ventral disc has a domed conformation and enables Giardia to attach to the host intestinal epithelia within seconds. The mechanism of attachment via the ventral disc and the overall structure, function, and assembly of the ventral disc are not well understood. Our recent proteomic analysis of the ventral disc indicated that the median body protein (MBP), previously reported to localize exclusively to the median body, was primarily localized to the ventral disc. Using high-resolution light and electron microscopy, we confirm that the median body protein localizes primarily to the overlap zone of the ventral disc. The MBP also occasionally localized to the median body during prophase. To define the contribution of MBP to the ventral disc structure, we depleted MBP using an anti-MBP morpholino. We found that the ventral disc was no longer able to form properly and that the disc structure often had an aberrant nondomed or flattened horseshoe conformation. The ability of attached anti-MBP morpholino-treated trophozoites to withstand shear forces and normal forces was significantly decreased. Most notably, the plasma membrane contacts with the surface, including those of the bare area, were defective after the anti-MBP knockdown. To our knowledge, this is the first ventral disc protein whose depletion directly alters ventral disc structure, confirming that the domed ventral disc conformation is important for robust attachment.
机译:贾第鞭毛虫具有独特的微管结构,包括腹盘,附着在宿主上的主要细胞器和中体(功能不确定的结构)。在附着过程中,腹膜盘呈圆顶状,使贾第虫能够在几秒钟内附着到宿主肠上皮。通过腹盘的附接机制以及腹盘的整体结构,功能和组装尚不十分清楚。我们最近对腹盘的蛋白质组学分析表明,以前报道过仅定位于中位体的中位体蛋白(MBP)主要定位于腹位盘。使用高分辨率的光镜和电子显微镜,我们确认身体中位蛋白主要定位于腹盘的重叠区。 MBP在前期也偶尔会定位于中位机体。为了定义MBP对腹盘结构的贡献,我们使用了抗MBP吗啉代耗尽了MBP。我们发现腹盘不再能够正确形成,并且盘结构经常具有异常的无环或扁平的马蹄形结构。附着的抗MBP吗啉代处理的滋养体承受剪切力和法向力的能力显着降低。最值得注意的是,抗MBP敲除后,质膜与表面的接触(包括裸露区域的接触)有缺陷。据我们所知,这是第一个腹膜圆盘蛋白,其消耗会直接改变腹膜圆盘的结构,从而确认圆顶腹膜圆盘构象对于稳固的附着很重要。

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