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纤毛内动力蛋白臂亚基的组成与功能在莱茵衣藻中的研究。

Composition and function of ciliary inner-dynein-arm subunits studied in Chlamydomonas reinhardtii.

机构信息

Department of Biological Sciences, Graduate School of Science, Osaka University, Osaka, Japan.

Department of Cell Biology, Emory University School of Medicine, Atlanta, Georgia, USA.

出版信息

Cytoskeleton (Hoboken). 2021 Mar;78(3):77-96. doi: 10.1002/cm.21662. Epub 2021 Apr 28.

Abstract

Motile cilia (also interchangeably called "flagella") are conserved organelles extending from the surface of many animal cells and play essential functions in eukaryotes, including cell motility and environmental sensing. Large motor complexes, the ciliary dyneins, are present on ciliary outer-doublet microtubules and drive movement of cilia. Ciliary dyneins are classified into two general types: the outer dynein arms (ODAs) and the inner dynein arms (IDAs). While ODAs are important for generation of force and regulation of ciliary beat frequency, IDAs are essential for control of the size and shape of the bend, features collectively referred to as waveform. Also, recent studies have revealed unexpected links between IDA components and human diseases. In spite of their importance, studies on IDAs have been difficult since they are very complex and composed for several types of IDA motors, each unique in composition and location in the axoneme. Thanks in part to genetic, biochemical, and structural analysis of Chlamydomonas reinhardtii, we are beginning to understand the organization and function of the ciliary IDAs. In this review, we summarize the composition of Chlamydomonas IDAs particularly focusing on each subunit, and discuss the assembly, conservation, and functional role(s) of these IDA subunits. Furthermore, we raise several additional questions/challenges regarding IDAs, and discuss future perspectives of IDA studies.

摘要

游动纤毛(也可互换地称为“鞭毛”)是从许多动物细胞表面伸出的保守细胞器,在真核生物中发挥着重要功能,包括细胞运动和环境感应。大型运动复合物,即纤毛动力蛋白,存在于纤毛外二联体微管上,并驱动纤毛运动。纤毛动力蛋白分为两种一般类型:外臂动力蛋白(ODA)和内臂动力蛋白(IDA)。虽然 ODA 对于产生力和调节纤毛拍频很重要,但 IDA 对于控制弯曲的大小和形状(统称为波形)是必不可少的。此外,最近的研究揭示了 IDA 成分与人类疾病之间的意外联系。尽管它们很重要,但由于 IDA 非常复杂,由几种类型的 IDA 电机组成,每种电机在轴丝中的组成和位置都不同,因此对 IDA 的研究一直很困难。部分得益于对莱茵衣藻的遗传、生化和结构分析,我们开始了解纤毛的 IDA 的组织和功能。在这篇综述中,我们总结了莱茵衣藻 IDA 的组成,特别关注每个亚基,并讨论了这些 IDA 亚基的组装、保守性和功能作用。此外,我们还提出了几个关于 IDA 的其他问题/挑战,并讨论了 IDA 研究的未来前景。

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