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XBX-1 Encodes a Dynein Light Intermediate Chain Required for Retrograde Intraflagellar Transport and Cilia Assembly in Caenorhabditis elegans

机译:XBX-1编码秀丽隐杆线虫逆行鞭毛内运输和纤毛组装所需的动力蛋白轻链。

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摘要

Intraflagellar transport (IFT) is a process required for flagella and cilia assembly that describes the dynein and kinesin mediated movement of particles along axonemes that consists of an A and a B complex, defects in which disrupt retrograde and anterograde transport, respectively. Herein, we describe a novel Caenorhabditis elegans gene, xbx-1, that is required for retrograde IFT and shares homology with a mammalian dynein light intermediate chain (D2LIC). xbx-1 expression in ciliated sensory neurons is regulated by the transcription factor DAF-19, as demonstrated previously for genes encoding IFT complex B proteins. XBX-1 localizes to the base of the cilia and undergoes anterograde and retrograde movement along the axoneme. Disruption of xbx-1 results in cilia defects and causes behavioral abnormalities observed in other cilia mutants. Analysis of cilia in xbx-1 mutants reveals that they are shortened and have a bulb like structure in which IFT proteins accumulate. The role of XBX-1 in IFT was further confirmed by analyzing the effect that other IFT mutations have on XBX-1 localization and movement. In contrast to other IFT proteins, retrograde XBX-1 movement was detected in complex A mutants. Our results suggest that the DLIC protein XBX-1 functions together with the CHE-3 dynein in retrograde IFT, downstream of the complex A proteins.
机译:鞭毛内运输(IFT)是鞭毛和纤毛组装所需的过程,该过程描述了动力蛋白和驱动蛋白介导的颗粒沿着轴突的运动,轴突由A和B复合体组成,缺陷分别破坏逆行和顺行运输。在这里,我们描述了一种新的秀丽隐杆线虫基因xbx-1,它是逆行IFT所必需的,并且与哺乳动物的达因轻链中间链(D2LIC)具有同源性。纤毛感觉神经元中的xbx-1表达受转录因子DAF-19的调节,如先前对编码IFT复合物B蛋白的基因所证明的。 XBX-1定位在纤毛的底部,并沿着轴突进行顺行和逆行运动。 xbx-1的破坏导致纤毛缺陷,并导致在其他纤毛突变体中观察到的行为异常。对xbx-1突变体中的纤毛进行分析后发现,它们被缩短,并具有IFT蛋白在其中积累的球状结构。通过分析其他IFT突变对XBX-1的定位和运动的影响,进一步证实了XBX-1在IFT中的作用。与其他IFT蛋白相反,在复杂的A突变体中检测到XBX-1逆行运动。我们的结果表明,DLIC蛋白XBX-1与CHE-3动力蛋白一起在复杂A蛋白下游的逆向IFT中起作用。

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