WDR92 associates with a prefoldin-like cochaperone complex and known dynein assembly factors. WDR92 has been very highly conserved and has a phylogenetic signature consistent with it playing a role in motile ciliary assembly or activity. Knockdown of WDR92 expression in planaria resulted in ciliary loss, reduced beat frequency and dyskinetic motion of the remaining ventral cilia. We have now identified a Chlamydomonas wdr92 mutant that encodes a protein missing the last four WD repeats. The wdr92-1 mutant builds only â¼0.7-μm cilia lacking both inner and outer dynein arms, but with intact doublet microtubules and central pair. When cytoplasmic extracts prepared by freeze/thaw from a control strain were fractionated by gel filtration, outer arm dynein components were present in several distinct high molecular weight complexes. In contrast, wdr92-1 extracts almost completely lacked all three outer arm heavy chains, while the IFT dynein heavy chain was present in normal amounts. A wdr92-1 tpg1-2 double mutant builds â¼7-μm immotile flaccid cilia that completely lack dynein arms. These data indicate that WDR92 is a key assembly factor specifically required for the stability of axonemal dynein heavy chains in cytoplasm and suggest that cytoplasmic/IFT dynein heavy chains use a distinct folding pathway.
WDR92 is required for axonemal dynein heavy chain stability in cytoplasm.
WDR92 是细胞质中轴丝动力蛋白重链稳定性所必需的
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作者:Patel-King Ramila S, Sakato-Antoku Miho, Yankova Maya, King Stephen M
| 期刊: | Molecular Biology of the Cell | 影响因子: | 2.700 |
| 时间: | 2019 | 起止号: | 2019 Jul 15; 30(15):1834-1845 |
| doi: | 10.1091/mbc.E19-03-0139 | 研究方向: | 细胞生物学 |
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