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解码纤毛功能:确定分区化纤毛生物发生所需的特定基因。

Decoding cilia function: defining specialized genes required for compartmentalized cilia biogenesis.

作者信息

Avidor-Reiss Tomer, Maer Andreia M, Koundakjian Edmund, Polyanovsky Andrey, Keil Thomas, Subramaniam Shankar, Zuker Charles S

机构信息

Howard Hughes Medical Institute and Division of Biological Sciences and Department of Neurosciences, University of California at San Diego, La Jolla, CA 92093, USA.

出版信息

Cell. 2004 May 14;117(4):527-39. doi: 10.1016/s0092-8674(04)00412-x.

Abstract

The evolution of the ancestral eukaryotic flagellum is an example of a cellular organelle that became dispensable in some modern eukaryotes while remaining an essential motile and sensory apparatus in others. To help define the repertoire of specialized proteins needed for the formation and function of cilia, we used comparative genomics to analyze the genomes of organisms with prototypical cilia, modified cilia, or no cilia and identified approximately 200 genes that are absent in the genomes of nonciliated eukaryotes but are conserved in ciliated organisms. Importantly, over 80% of the known ancestral proteins involved in cilia function are included in this small collection. Using Drosophila as a model system, we then characterized a novel family of proteins (OSEGs: outer segment) essential for ciliogenesis. We show that osegs encode components of a specialized transport pathway unique to the cilia compartment and are related to prototypical intracellular transport proteins.

摘要

祖先真核生物鞭毛的进化是一种细胞器进化的例子,这种细胞器在一些现代真核生物中变得不再必要,而在其他真核生物中仍然是必不可少的运动和感觉器官。为了帮助确定纤毛形成和功能所需的特定蛋白质库,我们使用比较基因组学分析了具有典型纤毛、修饰纤毛或无纤毛的生物体的基因组,并鉴定出约200个基因,这些基因在无纤毛真核生物的基因组中不存在,但在有纤毛的生物体中保守。重要的是,这个小集合中包含了超过80%已知的参与纤毛功能的祖先蛋白质。然后,我们以果蝇为模型系统,表征了一个对纤毛发生至关重要的新型蛋白质家族(OSEGs:外段)。我们表明,osegs编码纤毛区室特有的一种特殊运输途径的成分,并且与典型的细胞内运输蛋白相关。

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