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禽类 ciliopathic 突变体 talpid2 颅面缺陷的细胞和分子病因学。

The cellular and molecular etiology of the craniofacial defects in the avian ciliopathic mutant talpid2.

机构信息

Division of Plastic Surgery, Department of Surgery, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229, USA Division of Developmental Biology, Department of Pediatrics, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229, USA.

College of Agricultural and Environmental Sciences, Department of Animal Science, University of California Davis, Davis, CA 95616, USA.

出版信息

Development. 2014 Aug;141(15):3003-12. doi: 10.1242/dev.105924.

Abstract

talpid(2) is an avian autosomal recessive mutant with a myriad of congenital malformations, including polydactyly and facial clefting. Although phenotypically similar to talpid(3), talpid(2) has a distinct facial phenotype and an unknown cellular, molecular and genetic basis. We set out to determine the etiology of the craniofacial phenotype of this mutant. We confirmed that primary cilia were disrupted in talpid(2) mutants. Molecularly, we found disruptions in Hedgehog signaling. Post-translational processing of GLI2 and GLI3 was aberrant in the developing facial prominences. Although both GLI2 and GLI3 processing were disrupted in talpid(2) mutants, only GLI3 activator levels were significantly altered in the nucleus. Through additional fine mapping and whole-genome sequencing, we determined that the talpid(2) phenotype was linked to a 1.4 Mb region on GGA1q that contained the gene encoding the ciliary protein C2CD3. We cloned the avian ortholog of C2CD3 and found its expression was ubiquitous, but most robust in the developing limbs and facial prominences. Furthermore, we found that C2CD3 is localized proximal to the ciliary axoneme and is important for docking the mother centriole to the ciliary vesicle and cell membrane. Finally, we identified a 19 bp deletion in talpid(2) C2CD3 that produces a premature stop codon, and thus a truncated protein, as the likely causal allele for the phenotype. Together, these data provide insight into the cellular, molecular and genetic etiology of the talpid(2) phenotype. Our data suggest that, although the talpid(2) and talpid(3) mutations affect a common ciliogenesis pathway, they are caused by mutations in different ciliary proteins that result in differences in craniofacial phenotype.

摘要

talpid(2) 是一种具有多种先天畸形的鸟类常染色体隐性突变体,包括多指和面部裂。尽管在表型上与 talpid(3)相似,但 talpid(2)具有独特的面部表型和未知的细胞、分子和遗传基础。我们着手确定这种突变体颅面表型的病因。我们证实初级纤毛在 talpid(2)突变体中被破坏。从分子上看,我们发现 Hedgehog 信号通路被破坏。在面部突起的发育过程中,GLI2 和 GLI3 的翻译后加工异常。尽管 GLI2 和 GLI3 的加工都在 talpid(2)突变体中被破坏,但只有 GLI3 激活剂水平在核内显著改变。通过进一步的精细定位和全基因组测序,我们确定 talpid(2)表型与包含编码纤毛蛋白 C2CD3 的基因的 GGA1q 上的 1.4 Mb 区域有关。我们克隆了 C2CD3 的禽类同源物,发现其表达是普遍的,但在发育中的四肢和面部突起中最为强烈。此外,我们发现 C2CD3 定位于纤毛轴突的近端,对于将母中心粒与纤毛囊泡和细胞膜对接至关重要。最后,我们在 talpid(2) C2CD3 中发现了一个 19bp 的缺失,导致一个提前的终止密码子,从而产生一个截短的蛋白质,作为表型的可能原因等位基因。总之,这些数据为 talpid(2)表型的细胞、分子和遗传病因提供了深入了解。我们的数据表明,尽管 talpid(2)和 talpid(3)突变影响共同的纤毛发生途径,但它们是由不同的纤毛蛋白突变引起的,导致颅面表型的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74b7/4197679/0d7f6303f3c2/develop-141-105924-g1.jpg

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