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斑马鱼 Snapc4 的突变与肝内胆管网络的缺失有关。

Mutation of zebrafish Snapc4 is associated with loss of the intrahepatic biliary network.

机构信息

Department of Stem Cell Biology and Regenerative Medicine, Cleveland Clinic, Cleveland, OH 44195, USA.

出版信息

Dev Biol. 2012 Mar 1;363(1):128-37. doi: 10.1016/j.ydbio.2011.12.025. Epub 2011 Dec 23.

Abstract

Biliary epithelial cells line the intrahepatic biliary network, a complex three-dimensional network of conduits. The loss of differentiated biliary epithelial cells is the primary cause of many congenital liver diseases. We identified a zebrafish snapc4 (small nuclear RNA-activating complex polypeptide 4) mutant in which biliary epithelial cells initially differentiate but subsequently disappear. In these snapc4 mutant larvae, biliary epithelial cells undergo apoptosis, leading to degeneration of the intrahepatic biliary network. Consequently, in snapc4 mutant larvae, biliary transport of ingested fluorescent lipids to the gallbladder is blocked. Snapc4 is the largest subunit of a protein complex that regulates small nuclear RNA (snRNA) transcription. The snapc4(s445) mutation causes a truncation of the C-terminus, thereby deleting the domain responsible for a specific interaction with Snapc2, a vertebrate specific subunit of the SNAP complex. This mutation leads to a hypomorphic phenotype, as only a subset of snRNA transcripts are quantitatively altered in snapc4(s445) mutant larvae. snapc2 knockdown also disrupts the intrahepatic biliary network in a similar fashion as in snapc4(s445) mutant larvae. These data indicate that the physical interaction between Snapc2 and Snapc4 is important for the expression of a subset of snRNAs and biliary epithelial cell survival in zebrafish.

摘要

胆小管上皮细胞排列在肝内胆小管网络中,这是一个复杂的三维导管网络。分化的胆小管上皮细胞的丧失是许多先天性肝脏疾病的主要原因。我们在斑马鱼中鉴定出一个 snapc4(小核 RNA 激活复合物多肽 4)突变体,在该突变体中,胆小管上皮细胞最初分化,但随后消失。在这些 snapc4 突变体幼虫中,胆小管上皮细胞发生凋亡,导致肝内胆小管网络退化。因此,在 snapc4 突变体幼虫中,摄取的荧光脂质的胆盐运输被阻断到胆囊。Snapc4 是调节小核 RNA(snRNA)转录的蛋白质复合物的最大亚基。Snapc4(s445)突变导致 C 末端截断,从而删除与 Snapc2 特异性相互作用的结构域,Snapc2 是 SNAP 复合物的脊椎动物特异性亚基。这种突变导致低等位基因表型,因为只有一小部分 snRNA 转录物在 snapc4(s445)突变体幼虫中定量改变。Snapc2 的敲低也以类似于 snapc4(s445)突变体幼虫的方式破坏肝内胆小管网络。这些数据表明 Snapc2 和 Snapc4 之间的物理相互作用对于 snRNAs 的一部分的表达和斑马鱼中胆小管上皮细胞的存活是重要的。

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