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纤毛虫Nassula和Furgasonia胞咽器官中的类中心蛋白丝:与微管结构相关的证据

Centrin-like filaments in the cytopharyngeal apparatus of the ciliates Nassula and Furgasonia: evidence for a relationship with microtubular structures.

作者信息

Vigues B, Blanchard M P, Bouchard P

机构信息

UPRES A CNRS 6023, Laboratoire de Biologie Comparée des Protistes, Université Blaise Pascal Clermont-Ferrand II, Aubière, France.

出版信息

Cell Motil Cytoskeleton. 1999;43(1):72-81. doi: 10.1002/(SICI)1097-0169(1999)43:1<72::AID-CM8>3.0.CO;2-U.

Abstract

The cytopharyngeal apparatus in the Nassulinid ciliates Nassula and Furgasonia is a highly specialized microtubular/filamentous organelle designed for ingestion of organisms such as filamentous bacteria. From studies on living cells, it was previously shown that this organelle, also called "feeding basket," guides the filamentous bacteria and manipulates them to some extent during the early steps of ingestion. This results in a complex sequence of movements where the basket is successively dilated and constricted in its upper part. Whereas some of these movements (dilation) seem to be intrinsic to the microtubular components of the basket, others (constriction) are believed to be mediated by contractile filamentous structures [Tucker, 1968: J. Cell Sci. 3:493-514]. In this study, we have used antibodies raised against ciliate centrins to demonstrate these proteins by Western blot and immunocytochemical methods in Nassula and Furgasonia. In both ciliates, a 20-kDa centrin immunoanalog was localized in the upper (contractile) part of the cytopharyngeal apparatus. Immunoelectron microscopy revealed that cytopharyngeal centrin is engaged in filamentous material, forming a sphincter-like structure possibly involved in the movements of contraction. Interestingly, physical links were noted between filaments labeled for centrin and cytopharyngeal microtubules. The mechanistic implications of these findings are discussed.

摘要

纳氏纤毛虫Nassula和Furgasonia中的细胞咽器是一种高度特化的微管/丝状细胞器,用于摄取丝状细菌等生物体。通过对活细胞的研究,先前已表明这种细胞器,也称为“进食篮”,在摄取的早期阶段引导丝状细菌并在一定程度上对其进行操控。这导致了一系列复杂的运动,其中进食篮的上部会相继扩张和收缩。虽然这些运动中的一些(扩张)似乎是进食篮微管成分所固有的,但其他运动(收缩)被认为是由收缩性丝状结构介导的[塔克,1968:《细胞科学杂志》3:493 - 514]。在本研究中,我们使用针对纤毛虫中心蛋白产生的抗体,通过蛋白质免疫印迹法和免疫细胞化学方法在Nassula和Furgasonia中展示这些蛋白质。在这两种纤毛虫中,一种20 kDa的中心蛋白免疫类似物定位于细胞咽器的上部(收缩部分)。免疫电子显微镜显示,细胞咽中心蛋白与丝状物质结合,形成一种可能参与收缩运动的括约肌样结构。有趣的是,观察到标记有中心蛋白的细丝与细胞咽微管之间存在物理联系。讨论了这些发现的机制意义。

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