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首页> 外文期刊>Development >Identification of chaperonin CCT gamma subunit as a determinant of retinotectal development by whole-genome subtraction cloning from zebrafish no tectal neuron mutant.
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Identification of chaperonin CCT gamma subunit as a determinant of retinotectal development by whole-genome subtraction cloning from zebrafish no tectal neuron mutant.

机译:伴侣蛋白CCTγ亚基的确定,通过从斑马鱼无盖神经元突变体的全基因组扣除克隆来确定视网膜盖发育的决定因素。

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Zebrafish no tectal neuron (ntn) mutant obtained by trimethylpsoralen (TMP) mutagenesis showed defects in tectal neuropil formation and small eyes. We carried out whole-genome subtraction between wild-type and mutant zebrafish embryos using the representational difference analysis (RDA) method. Nineteen subtraction products enabled us to construct genetic and physical maps of the ntn region. Direct selection of cDNAs using a YAC clone encompassing the ntn locus and RT-PCR analysis of transcripts identified a 143 bp deletion in the cct3 gene encoding the gamma subunit of chaperonin containing TCP-1 (CCT). Injection of antisense cct3 morpholino oligonucleotides into zebrafish embryos induced characteristic ntn phenotypes including defects in retinal ganglion cell (RGC) differentiation and tectal neuropil formation. Moreover, injection of cct3 mRNA successfully rescued ntn mutant embryos. Our results suggest that RDA is an efficient and widely applicable cloning strategy in zebrafish genetics. The strong expression of the cct3 mRNA started in the entire embryos by 12 hpf and was sustained thereafter, but there were no detectable abnormalities in body patterning and neurogenesis in ntn mutant embryos at 30 hpf. The expression patterns of transcription factor genes ath5 and brn3b that are essential for the development and maintenance of RGCs were indistinguishable between wild-type and ntn mutant embryos, but those of early and late differentiation markers of RGCs, nicotinic acetylcholine receptor beta 3 and zn5, were diminished in mutant embryos. Immunostaining of acetylated tubulin also revealed the impairment of RGC neurite extension. Thus, the ntn mutation of the cct3 gene impaired the differentiation of retinal neuroepithelial cells to RGCs. Similarly, the expression of brn3b was normal in the tectum of ntn mutants, but tectal neuropil formation was abolished. These results suggest that the gamma subunit of chaperonin CCT plays an essential role in retinotectal development.
机译:斑马鱼通过三甲基补骨脂素(TMP)诱变获得的没有顶盖神经元(ntn)突变体显示出顶盖神经毛形成缺陷和小眼睛。我们使用代表性差异分析(RDA)方法在野生型和突变型斑马鱼胚胎之间进行了全基因组扣除。十九种减法产品使我们能够构建ntn区域的遗传图谱和物理图谱。使用包含ntn位点的YAC克隆直接选择cDNA,并对转录本进行RT-PCR分析,在编码包含伴侣蛋白的TCP-1(CCT)γ亚基的cct3基因中发现143 bp缺失。反义cct3吗啉代寡核苷酸注射到斑马鱼胚胎中诱导特有的ntn表型,包括视网膜神经节细胞(RGC)分化和顶盖神经纤维形成的缺陷。此外,注射cct3 mRNA成功拯救了ntn突变体胚胎。我们的结果表明,RDA是斑马鱼遗传学中一种有效且广泛适用的克隆策略。 cct3 mRNA的强表达开始于整个胚胎,直到12 hpf,此后一直持续,但是在30hpf的ntn突变体胚胎中,在体模式和神经发生方面没有可检测到的异常。对于RGC的发育和维持至关重要的转录因子基因ath5和brn3b的表达模式在野生型和ntn突变型胚胎之间是无法区分的,但是在RGC的早期和晚期分化标记,烟碱型乙酰胆碱受体β3和zn5上,在突变体胚胎中减少。乙酰化微管蛋白的免疫染色也显示了RGC神经突延伸的损害。因此,cct3基因的ntn突变会损害视网膜神经上皮细胞向RGC的分化。同样,在ntn突变体的顶盖中brn3b的表达是正常的,但顶盖神经pil的形成被取消了。这些结果表明,伴侣蛋白CCT的γ亚基在视网膜保护层发育中起重要作用。

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