Serluca Fabrizio C, Xu Bo, Okabe Noriko, Baker Kari, Lin Shin-Yi, Sullivan-Brown Jessica, Konieczkowski David J, Jaffe Kimberly M, Bradner Joshua M, Fishman Mark C, Burdine Rebecca D
Massachusetts General Hospital, Charlestown, MA 02129, USA.
Development. 2009 May;136(10):1621-31. doi: 10.1242/dev.020735.
Cilia defects have been implicated in a variety of human diseases and genetic disorders, but how cilia motility contributes to these phenotypes is still unknown. To further our understanding of how cilia function in development, we have cloned and characterized two alleles of seahorse, a zebrafish mutation that results in pronephric cysts. seahorse encodes Lrrc6l, a leucine-rich repeat-containing protein that is highly conserved in organisms that have motile cilia. seahorse is expressed in zebrafish tissues known to contain motile cilia. Although mutants do not affect cilia structure and retain the ability to interact with Disheveled, both alleles of seahorse strongly affect cilia motility in the zebrafish pronephros and neural tube. Intriguingly, although seahorse mutations variably affect fluid flow in Kupffer's vesicle, they can have very weak effects on left-right patterning. Combined with recently published results, our alleles suggest that the function of seahorse in cilia motility is separable from its function in other cilia-related phenotypes.
纤毛缺陷与多种人类疾病和遗传疾病有关,但纤毛运动如何导致这些表型仍不清楚。为了进一步了解纤毛在发育中的功能,我们克隆并鉴定了海马(seahorse)的两个等位基因,这是一种导致斑马鱼前肾囊肿的突变。海马编码Lrrc6l,一种富含亮氨酸重复序列的蛋白质,在具有活动纤毛的生物体中高度保守。海马在已知含有活动纤毛的斑马鱼组织中表达。虽然突变体不影响纤毛结构并保留与Disheveled相互作用的能力,但海马的两个等位基因都强烈影响斑马鱼前肾和神经管中的纤毛运动。有趣的是,尽管海马突变对库普弗小泡中的液体流动有不同程度的影响,但它们对左右模式的影响可能非常微弱。结合最近发表的结果,我们的等位基因表明,海马在纤毛运动中的功能与其在其他纤毛相关表型中的功能是可分离的。