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斑马鱼转化生长因子β3(tgfbeta3)的基因组、cDNA及胚胎表达分析

Genomic, cDNA, and embryonic expression analysis of zebrafish transforming growth factor beta 3 (tgfbeta3).

作者信息

Cheah Felicia S H, Jabs Ethylin Wang, Chong Samuel S

机构信息

Department of Pediatrics, National University of Singapore and Hospital, Singapore 119074, Singapore.

出版信息

Dev Dyn. 2005 Apr;232(4):1021-30. doi: 10.1002/dvdy.20282.

Abstract

TGFbeta3, a member of the transforming growth factor beta family, regulates a spectrum of biological processes and is involved in mammalian pulmonary and craniofacial development. Homologs of human TGFbeta3 have been identified in several vertebrate species. We sequenced a cDNA clone of zebrafish tgfbeta3, consisting of a 271-bp 5' untranslated region, a 1,233-bp open reading frame that encodes a predicted 410 amino acid peptide, and a 527-bp 3' untranslated region. Using 5' rapid amplification of cDNA ends, the transcription start site of this gene was determined to lie an additional 29 nucleotides upstream. The gene is composed of seven exons and maps to a segment of linkage group 17 that is syntenic to the human TGFbeta3 locus on chromosome 14q24. One stimulating protein 1 (Sp1) and two (TATA binding protein) (TBP) transcription factor binding sites were identified in the putative promoter segment upstream of the transcription start site. Comparative alignment analysis revealed a high degree of tgfbeta3 nucleotide and amino acid identity between zebrafish and other species, including complete conservation of the cysteine knot structure that facilitates protein-protein interaction. Also, 9 of 10 amino acid residues critical for ligand/receptor binding in human TGFbeta3 are conserved in zebrafish, suggesting a high degree of functional conservation even in lower vertebrates. Zebrafish tgfbeta3 transcripts were first detected in the notochord (10 somite to high-pec stage), followed by expression in the developing pharyngeal arch and neurocranial cartilage (18 somite to protruding mouth stage), lens and heart (21 somite to protruding mouth stage), and pectoral fins (prim-25 to protruding mouth stage). The strong expression in the pectoral fins, not reported in the orthologous mammalian forelimb, suggests a modified or novel function of tgfbeta3 during early fish development.

摘要

转化生长因子β3(TGFbeta3)是转化生长因子β家族的成员之一,可调节一系列生物学过程,并参与哺乳动物的肺部和颅面发育。在几种脊椎动物物种中已鉴定出人类TGFbeta3的同源物。我们对斑马鱼tgfbeta3的一个cDNA克隆进行了测序,该克隆由一个271bp的5'非翻译区、一个1233bp的开放阅读框(编码一个预测的410个氨基酸的肽)和一个527bp的3'非翻译区组成。使用5' cDNA末端快速扩增技术,确定该基因的转录起始位点位于上游另外29个核苷酸处。该基因由七个外显子组成,定位于连锁群17的一段区域,该区域与人类14q24染色体上的TGFbeta3基因座同线。在转录起始位点上游的假定启动子区域中鉴定出一个刺激蛋白1(Sp1)和两个(TATA结合蛋白)(TBP)转录因子结合位点。比较比对分析显示,斑马鱼与其他物种之间的tgfbeta3核苷酸和氨基酸具有高度同一性,包括促进蛋白质-蛋白质相互作用的半胱氨酸结结构完全保守。此外,人类TGFbeta3中对配体/受体结合至关重要的10个氨基酸残基中有9个在斑马鱼中保守,这表明即使在低等脊椎动物中也具有高度的功能保守性。斑马鱼tgfbeta3转录本首先在脊索中被检测到(10体节至高胸鳍阶段),随后在发育中的咽弓和神经颅软骨(18体节至突出嘴阶段)、晶状体和心脏(21体节至突出嘴阶段)以及胸鳍(prim-25至突出嘴阶段)中表达。胸鳍中的强表达在直系同源的哺乳动物前肢中未被报道这表明tgfbeta3在鱼类早期发育过程中具有修饰或新的功能。

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