From the molecular biology of prolactin and its receptor to the lessons learned from knockout mice models

Vincent Goffin , Nadine Binart , Philippe Clément-Lacroix , Brigitte Bouchard , Christine Bole-Feysot , Marc Edery , Brian K Lucas , Philippe Touraine , Alain Pezet , Ronda Maaskant , Caroline Pichard , Christine Helloco , Nathalie Baran , Hélène Favre , Sophie Bernichtein , Angélique Allamando , Christopher Ormandy , Paul A Kelly
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引用次数: 82

Abstract

Prolactin (PRL), a polypeptide hormone secreted mainly by the pituitary and, to a lesser extent, by peripheral tissues, affects more physiological processes than all other pituitary hormones combined since it is involved in>300 separate functions in vertebrates. Its main actions are related to lactation and reproduction. The initial step of PRL action is the binding to a specific membrane receptor, the PRLR, which belongs to the class 1 cytokine receptor superfamily. PRL-binding sites have been identified in a number of tissues and cell types in adult animals. Signal transduction by this receptor is mediated, at least in part, by two families of signaling molecules: Janus tyrosine kinases and signal transducers and activators of transcription (STATs). Disruption of the PRLR gene has provided a new mouse model with which to identify actions directly associated with PRL or any other PRLR ligands, such as placental lactogens. To date, several different phenotypes have been analyzed and are briefly described in this review. Coupled with the SAGE technique, this PRLR knockout model is being used to qualitatively and quantitatively evaluate the expression pattern of hepatic genes in two physiological situations: transcriptomes corresponding to livers from both wild type and PRLR KO mice are being compared, and following statistical analyses, candidate genes presenting a differential profile will be further characterized. Such a new approach will undoubtedly open future avenues of research for PRL targets. To date, no pathology linked to any mutation in the genes encoding PRL or its receptor have been identified. The development of genetic models provides new opportunities to understand how PRL can participate to the development of pathologies throughout life, as for example the initiation and progression of breast cancer.

从催乳素及其受体的分子生物学到敲除小鼠模型的经验教训
催乳素(PRL)是一种多肽激素,主要由脑垂体分泌,在较小程度上由外周组织分泌。由于它在脊椎动物中涉及300种不同的功能,因此它比所有其他脑垂体激素加起来影响更多的生理过程。它的主要作用与哺乳和繁殖有关。PRL作用的第一步是与特定的膜受体PRLR结合,PRLR属于1类细胞因子受体超家族。prl结合位点已经在成年动物的许多组织和细胞类型中被鉴定出来。该受体的信号转导至少部分由两个信号分子家族介导:Janus酪氨酸激酶和信号转导及转录激活因子(STATs)。PRLR基因的破坏提供了一种新的小鼠模型,用于识别与PRL或任何其他PRLR配体(如胎盘乳原)直接相关的作用。到目前为止,已经分析了几种不同的表型,并在本综述中进行了简要描述。结合SAGE技术,该PRLR基因敲除模型用于定性和定量评估两种生理情况下肝脏基因的表达模式:比较野生型和PRLR KO小鼠肝脏对应的转录组,并通过统计分析,进一步表征具有差异谱的候选基因。这种新方法无疑将为PRL靶点的研究开辟新的途径。迄今为止,尚未发现与PRL或其受体编码基因突变相关的病理。遗传模型的发展为了解PRL如何参与生命病理的发展提供了新的机会,例如乳腺癌的发生和发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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