Department of Life and Environmental Sciences, Faculty of Bioresource Sciences, Prefectural University of Hiroshima.
Department of Biological Sciences, Chuo University.
Cell Struct Funct. 2023 Sep 23;48(2):175-185. doi: 10.1247/csf.23044. Epub 2023 Jul 28.
Ciliary outer-arm dynein (OAD) consists of heavy chains (HCs), intermediate chains (ICs), and light chains (LCs), of which HCs are the motor proteins that produce force. Studies using the green alga Chlamydomonas have revealed that ICs and LCs form a complex (IC/LC tower) at the base of the OAD tail and play a crucial role in anchoring OAD to specific sites on the microtubule. In this study, we isolated a novel slow-swimming Chlamydomonas mutant deficient in the IC2 protein. This mutation, E279K, is in the third of the seven WD repeat domains. No apparent abnormality was observed in electron microscope observations of axonemes or in SDS-PAGE analyses of dynein subunits. To explore the reason for the lowered motility in this mutant, in vitro microtubule sliding experiments were performed, which revealed that the motor activity of the mutant OAD was lowered. In particular, a large difference was observed between wild type (WT) and the mutant in the microtubule sliding velocity in microtubule bundles formed with the addition of OAD: ~35.3 μm/sec (WT) and ~4.3 μm/sec (mutant). From this and other results, we propose that IC2 in an OAD interacts with the β HC of the adjacent OAD, and that an OAD-OAD interaction is important for efficient beating of cilia and flagella.Key words: cilia, axoneme, dynein heavy chain, cooperativity.
纤毛外臂动力蛋白(OAD)由重链(HCs)、中间链(ICs)和轻链(LCs)组成,其中 HCs 是产生力的运动蛋白。使用绿藻衣藻的研究表明,ICs 和 LCs 在 OAD 尾部的基部形成一个复合物(IC/LC 塔),并在将 OAD 锚定到微管上的特定位置方面发挥关键作用。在这项研究中,我们分离出一种新型的缓慢游动衣藻突变体,该突变体缺乏 IC2 蛋白。该突变,E279K,位于七个 WD 重复结构域中的第三个。在轴丝的电子显微镜观察或动力蛋白亚基的 SDS-PAGE 分析中,没有观察到明显的异常。为了探究该突变体运动能力降低的原因,进行了体外微管滑动实验,结果表明突变体 OAD 的运动活性降低。特别是,在添加 OAD 形成的微管束中,观察到野生型(WT)和突变体之间的微管滑动速度存在很大差异:35.3 μm/sec(WT)和4.3 μm/sec(突变体)。根据这些和其他结果,我们提出 IC2 在 OAD 中与相邻 OAD 的β HC 相互作用,并且 OAD-OAD 相互作用对于纤毛和鞭毛的有效摆动很重要。关键词:纤毛、轴丝、动力蛋白重链、协同性。