首页> 外文期刊>Molecular biology of the cell >DC3, the 21-kDa subunit of the outer dynein arm-docking complex (ODA-DC), is a novel EF-hand protein important for assembly of both the outer arm and the ODA-DC
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DC3, the 21-kDa subunit of the outer dynein arm-docking complex (ODA-DC), is a novel EF-hand protein important for assembly of both the outer arm and the ODA-DC

机译:DC3是外部达因臂对接复合物(ODA-DC)的21 kDa亚基,是一种新颖的EF手蛋白,对于组装外臂和ODA-DC都很重要

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The outer dynein arm-docking complex (ODA-DC) is a microtubule-associated structure that targets the outer dynein arm to its binding site on the flagellar axoneme (Takada et al. 2002. Mol. Biol. Cell 13, 1015-1029). The ODA-DC of Chlamydomonas contains three proteins, referred to as DC1, DC2, and DC3. We here report the isolation and sequencing of genomic and full-length cDNA clones encoding DC3. The sequence predicts a 21,341 Da protein with four EF-hands that is a member of the CTER (calmodulin, troponin C, essential and regulatory myosin light chains) group and is most closely related to a predicted protein from Plasmodium. The DC3 gene, termed ODA14, is intronless. Chlamydomonas mutants that lack DC3 exhibit slow, jerky swimming because of loss of some but not all outer dynein arms. Some outer doublet microtubules without arms had a "partial" docking complex, indicating that DC1 and DC2 can assemble in the absence of DC3. In contrast, DC3 cannot assemble in the absence of DC1 or DC2. Transformation of a DC3-deletion strain with the wild-type DC3 gene rescued both the motility phenotype and the structural defect, whereas a mutated DC3 gene was incompetent to rescue. The results indicate that DC3 is important for both outer arm and ODA-DC assembly. [References: 58]
机译:外部达因臂对接复合物(ODA-DC)是一种微管相关结构,将外部达因臂对准鞭毛轴突上的结合位点(Takada et al。2002. Mol。Biol。Cell 13,1015-1029)。 。衣藻的ODA-DC包含三种蛋白,分别称为DC1,DC2和DC3。我们在这里报告了编码DC3的基因组和全长cDNA克隆的分离和测序。该序列预测具有四个EF手的21,341 Da蛋白是CTER(钙调蛋白,肌钙蛋白C,必需和调节性肌球蛋白轻链)组的成员,并且与疟原虫的预测蛋白最相关。称为ODA14的DC3基因是无内含子的。缺乏DC3的衣原体突变体表现出缓慢,生涩的游泳,因为失去了一些但不是全部的外部动力蛋白臂。一些没有臂的外部双态微管具有“部分”对接结构,表明DC1和DC2可以在没有DC3的情况下组装。相反,在没有DC1或DC2的情况下,DC3无法组装。用野生型DC3基因转化DC3缺失菌株可以挽救运动性表型和结构缺陷,而突变的DC3基因则不能挽救。结果表明,DC3对于外臂和ODA-DC组装都很重要。 [参考:58]

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