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斑马鱼bHLH PAS转录调节因子单 minded 1(sim1)是促性腺激素细胞发育所必需的。

The zebrafish bHLH PAS transcriptional regulator, single-minded 1 (sim1), is required for isotocin cell development.

作者信息

Eaton Jennifer L, Glasgow Eric

机构信息

Graduate Program in Cellular and Molecular Biology, School of Biomedical Sciences, Kent State University, Kent, Ohio, USA.

出版信息

Dev Dyn. 2006 Aug;235(8):2071-82. doi: 10.1002/dvdy.20848.

Abstract

A wide range of physiological and behavioral processes, such as social, sexual, and maternal behaviors, learning and memory, and osmotic homeostasis are influenced by the neurohypophysial peptides oxytocin and vasopressin. Disruptions of these hormone systems have been linked to several neurobehavioral disorders, including autism, Prader-Willi syndrome, affective disorders, and obsessive-compulsive disorder. Studies in zebrafish promise to reveal the complex network of regulatory genes and signaling pathways that direct the development of oxytocin- and vasopressin-like neurons, and provide insight into factors involved in brain disorders associated with disruption of these systems. Isotocin, which is homologous to oxytocin, is expressed early, in a simple pattern in the developing zebrafish brain. Single-minded 1 (sim1), a member of the bHLH-PAS family of transcriptional regulatory genes, is required for terminal differentiation of mammalian oxytocin cells and is a master regulator of neurogenesis in Drosophila. Here we show that sim1 is expressed in the zebrafish forebrain and is required for isotocin cell development. The expression pattern of sim1 mRNA in the embryonic forebrain is dynamic and complex, and overlaps with isotocin expression in the preoptic area. We provide evidence that the role of sim1 in zebrafish neuroendocrine cell development is evolutionarily conserved with that of mammals.

摘要

多种生理和行为过程,如社交、性行为和母性行为、学习与记忆以及渗透稳态,都受到神经垂体肽催产素和加压素的影响。这些激素系统的紊乱与多种神经行为障碍有关,包括自闭症、普拉德-威利综合征、情感障碍和强迫症。斑马鱼研究有望揭示指导催产素样和加压素样神经元发育的复杂调控基因网络和信号通路,并深入了解与这些系统破坏相关的脑部疾病所涉及的因素。与催产素同源的异催产素在发育中的斑马鱼大脑中早期以简单模式表达。单 minded 1(sim1)是转录调控基因bHLH-PAS家族的成员,是哺乳动物催产素细胞终末分化所必需的,并且是果蝇神经发生的主要调节因子。在这里,我们表明sim1在斑马鱼前脑中表达,并且是异催产素细胞发育所必需的。sim1 mRNA在胚胎前脑中的表达模式是动态且复杂的,并且与视前区的异催产素表达重叠。我们提供证据表明,sim1在斑马鱼神经内分泌细胞发育中的作用在进化上与哺乳动物是保守的。

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