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Cep70和Cep131有助于斑马鱼胚胎的纤毛发生。

Cep70 and Cep131 contribute to ciliogenesis in zebrafish embryos.

作者信息

Wilkinson Christopher J, Carl Matthias, Harris William A

机构信息

Department of Physiology, Development and Neuroscience, University of Cambridge, Downing Street, Cambridge, CB2 3DY, UK.

出版信息

BMC Cell Biol. 2009 Mar 2;10:17. doi: 10.1186/1471-2121-10-17.

Abstract

BACKGROUND

The centrosome is the cell's microtubule organising centre, an organelle with important roles in cell division, migration and polarity. However, cells can divide and flies can, for a large part of development, develop without them. Many centrosome proteins have been identified but the roles of most are still poorly understood. The centrioles of the centrosome are similar to the basal bodies of cilia, hair-like extensions of many cells that have important roles in cell signalling and development. In a number of human diseases, such Bardet-Biedl syndrome, centrosome/cilium proteins are mutated, leading to polycystic kidney disease, situs inversus, and neurological problems, amongst other symptoms.

RESULTS

We describe zebrafish (Danio rerio) embryos depleted for two uncharacterised, centrosome proteins, Cep70 and Cep131. The phenotype of these embryos resembles that of zebrafish mutants for intraflagellar transport proteins (IFTs), with kidney and ear development affected and left-right asymmetry randomised. These organs and processes are those affected in Bardet-Biedl syndrome and other similar diseases. Like these diseases, the root cause of the phenotype lies, in fact, in dysfunctional cilia, which are shortened but not eliminated in several tissues in the morphants. Centrosomes and basal bodies, on the other hand, are present. Both Cep70 and Cep131 possess a putative HDAC (histone deacetylase) interacting domain. However, we could not detect in yeast two-hybrid assays any interaction with the deacetylase that controls cilium length, HDAC6, or any of the IFTs that we tested.

CONCLUSION

Cep70 and Cep131 contribute to ciliogenesis in many tissues in the zebrafish embryo: cilia are made in cep70 and cep131 morphant zebrafish embryos but are shortened. We propose that the role of these centrosomal/basal body proteins is in making the cilium and that they are involved in determination of the length of the axoneme.

摘要

背景

中心体是细胞的微管组织中心,是一种在细胞分裂、迁移和极性方面具有重要作用的细胞器。然而,细胞可以进行分裂,并且在很大一部分发育过程中,果蝇在没有中心体的情况下也能发育。许多中心体蛋白已被鉴定出来,但大多数蛋白的作用仍知之甚少。中心体的中心粒类似于纤毛的基体,纤毛是许多细胞的毛发状延伸结构,在细胞信号传导和发育中具有重要作用。在一些人类疾病中,如巴德-比德尔综合征,中心体/纤毛蛋白发生突变,导致多囊肾病、内脏反位和神经问题等症状。

结果

我们描述了斑马鱼(Danio rerio)胚胎中两种未表征的中心体蛋白Cep70和Cep131缺失的情况。这些胚胎的表型类似于斑马鱼鞭毛内运输蛋白(IFTs)突变体的表型,肾脏和耳朵发育受到影响,左右不对称随机化。这些器官和过程正是在巴德-比德尔综合征和其他类似疾病中受到影响的。与这些疾病一样,表型的根本原因实际上在于功能失调的纤毛,在形态突变体的几个组织中纤毛缩短但未消除。另一方面,中心体和基体是存在的。Cep70和Cep131都具有一个假定的组蛋白去乙酰化酶(HDAC)相互作用结构域。然而,在酵母双杂交试验中,我们未能检测到它们与控制纤毛长度的确组蛋白去乙酰化酶HDAC6或我们测试的任何一种IFTs之间的相互作用。

结论

Cep70和Cep131在斑马鱼胚胎的许多组织中对纤毛发生有贡献:在Cep70和Cep131形态突变体斑马鱼胚胎中能形成纤毛,但纤毛会缩短。我们提出这些中心体/基体蛋白的作用是形成纤毛,并且它们参与轴丝长度的确定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4b1/2662791/a77887cd46d8/1471-2121-10-17-1.jpg

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