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北极星蛋白和多囊蛋白-2在斑马鱼背侧先驱细胞和库普弗小泡中对于左右轴的特化是必需的。

Polaris and Polycystin-2 in dorsal forerunner cells and Kupffer's vesicle are required for specification of the zebrafish left-right axis.

作者信息

Bisgrove Brent W, Snarr Brian S, Emrazian Anoush, Yost H Joseph

机构信息

Huntsman Cancer Institute Center for Children, Department of Oncological Sciences, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

Dev Biol. 2005 Nov 15;287(2):274-88. doi: 10.1016/j.ydbio.2005.08.047. Epub 2005 Oct 7.

Abstract

Recently, it has become clear that motile cilia play a central role in initiating a left-sided signaling cascade important in establishing the LR axis during mouse and zebrafish embryogenesis. Two genes proposed to be important in this cilia-mediated signaling cascade are polaris and polycystin-2 (pkd2). Polaris is involved in ciliary assembly, while Pkd2 is proposed to function as a Ca(2+)-permeable cation channel. We have cloned zebrafish homologues of polaris and pkd2. Both genes are expressed in dorsal forerunner cells (DFCs) from gastrulation to early somite stages when these cells form a ciliated Kupffer's vesicle (KV). Morpholino-mediated knockdown of Polaris or Pkd2 in zebrafish results in misexpression of left-side-specific genes, including southpaw, lefty1 and lefty2, and randomization of heart and gut looping. By targeting morpholinos to DFCs/KV, we show that polaris and pkd2 are required in DFCs/KV for normal LR development. Polaris morphants have defects in KV cilia, suggesting that the laterality phenotype is due to problems in cilia function per se. We further show that expression of polaris and pkd2 is dependent on the T-box transcription factors no tail and spadetail, respectively, suggesting that these genes have a previously unrecognized role in regulating ciliary structure and function. Our data suggest that the functions of polaris and pkd2 in LR patterning are conserved between zebrafish and mice and that Kupffer's vesicle functions as a ciliated organ of asymmetry.

摘要

最近,已经明确的是,活动纤毛在启动一个左侧信号级联反应中起着核心作用,该信号级联反应在小鼠和斑马鱼胚胎发育过程中建立左右(LR)轴时很重要。在这个由纤毛介导的信号级联反应中,有两个基因被认为很重要,即北极星蛋白(Polaris)和多囊蛋白-2(Pkd2)。北极星蛋白参与纤毛组装,而Pkd2被认为作为一个钙离子通透的阳离子通道发挥作用。我们已经克隆了斑马鱼北极星蛋白和Pkd2的同源物。从原肠胚形成到早期体节阶段,当这些细胞形成一个有纤毛的库普弗囊泡(KV)时,这两个基因在背侧先驱细胞(DFC)中都有表达。在斑马鱼中,通过吗啉代介导敲低北极星蛋白或Pkd2会导致左侧特异性基因的错误表达,包括南爪基因(southpaw)、左y1基因(lefty1)和左y2基因(lefty2),以及心脏和肠道环化的随机化。通过将吗啉代靶向DFC/KV,我们表明在DFC/KV中,北极星蛋白和Pkd2是正常LR发育所必需的。北极星蛋白的吗啉代敲降胚胎在KV纤毛上有缺陷,这表明左右侧表型是由于纤毛功能本身的问题所致。我们进一步表明,北极星蛋白和Pkd2的表达分别依赖于T盒转录因子无尾基因(no tail)和尖尾基因(spadetail),这表明这些基因在调节纤毛结构和功能方面具有以前未被认识到的作用。我们的数据表明,北极星蛋白和Pkd2在LR模式形成中的功能在斑马鱼和小鼠之间是保守的,并且库普弗囊泡作为一个不对称的有纤毛器官发挥作用。

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