Viera-Vera Jorge, García-Arrarás José E
Biology Department, University of Puerto Rico, Río Piedras 00931, Puerto Rico.
Biology Department, University of Puerto Rico, Río Piedras 00931, Puerto Rico.
Gene. 2018 May 15;654:23-35. doi: 10.1016/j.gene.2018.01.102. Epub 2018 Feb 7.
Retinoic acid receptors (RAR) and retinoid X receptors (RXR) are ligand-mediated transcription factors that synchronize intricate signaling networks in metazoans. Dimer formation between these two nuclear receptors mediates the recruitment of co-regulatory complexes coordinating the progression of signaling cascades during developmental and regenerative events. In the present study we identified and characterized the receptors for retinoic acid in the sea cucumber Holothuria glaberrima; a model system capable of regenerative organogenesis during adulthood. Molecular characterizations revealed the presence of three isoforms of RAR and two of RXR as a consequence of alternative splicing events. Various analyses including: primary structure sequencing, phylogenetic analysis, protein domain prediction, and multiple sequence alignment further confirmed their identity. Semiquantitative reverse transcription PCR analysis of each receptor isoform herein identified showed that the retinoid receptors are expressed in all tissues sampled: the mesenteries, respiratory trees, muscles, gonads, and the digestive tract. During regenerative organogenesis two of the receptors (RAR-L and RXR-T) showed differential expression in the posterior segment while RAR-S is differentially expressed in the anterior segment of the intestine. This work presents the first description of the components relaying the signaling for retinoic acid within this model system.
维甲酸受体(RAR)和类视黄醇X受体(RXR)是配体介导的转录因子,可使后生动物中复杂的信号网络同步。这两种核受体之间的二聚体形成介导了共调节复合物的募集,从而在发育和再生过程中协调信号级联反应的进程。在本研究中,我们鉴定并表征了光滑海参(Holothuria glaberrima)中的维甲酸受体;海参是一种能够在成年期进行再生器官发生的模型系统。分子特征表明,由于可变剪接事件,存在三种RAR异构体和两种RXR异构体。包括一级结构测序、系统发育分析、蛋白质结构域预测和多序列比对在内的各种分析进一步证实了它们的身份。本文对每种已鉴定的受体异构体进行的半定量逆转录PCR分析表明,类视黄醇受体在所有采样组织中均有表达:肠系膜、呼吸树、肌肉、性腺和消化道。在再生器官发生过程中,其中两种受体(RAR-L和RXR-T)在后部表现出差异表达,而RAR-S在肠道前部表现出差异表达。这项工作首次描述了该模型系统中传递维甲酸信号的成分。