Departamento de Fisiología y Desarrollo Celular, Instituto Nacional de Perinatología, Ciudad de México, Mexico.
Departamento de Neurociencias, Instituto Nacional de Cancerología, Ciudad de México, Mexico.
Neuroendocrinology. 2022;112(3):201-214. doi: 10.1159/000516939. Epub 2021 Apr 30.
Prolactin (PRL) is a versatile hormone that exerts more than 300 functions in vertebrates, mainly associated with physiological effects in adult animals. Although the process that regulates early development is poorly understood, evidence suggests a role of PRL in the early embryonic development regarding pluripotency and nervous system development. Thus, PRL could be a crucial regulator in oocyte preimplantation and maturation as well as during diapause, a reversible state of blastocyst development arrest that shares metabolic, transcriptomic, and proteomic similarities with pluripotent stem cells in the naïve state. Thus, we analyzed the role of the hormone during those processes, which involve the regulation of its receptor and several signaling cascades (Jak/Mapk, Jak/Stat, and PI3k/Akt), resulting in either a plethora of physiological actions or their dysregulation, a factor in developmental disorders. Finally, we propose models to improve the knowledge on PRL function during early development.
催乳素(PRL)是一种多功能激素,在脊椎动物中发挥着 300 多种功能,主要与成年动物的生理效应有关。尽管调节早期发育的过程还知之甚少,但有证据表明 PRL 在胚胎早期发育中具有多能性和神经系统发育方面的作用。因此,PRL 可能是卵母细胞植入前和成熟以及休眠期间的关键调节因子,休眠是一种囊胚发育停滞的可逆状态,与原始状态下的多能干细胞在代谢、转录组和蛋白质组方面具有相似性。因此,我们分析了该激素在这些过程中的作用,其中涉及到受体和几种信号通路(Jak/Mapk、Jak/Stat 和 PI3k/Akt)的调节,从而导致大量的生理作用或其失调,这是发育障碍的一个因素。最后,我们提出了一些模型,以提高对 PRL 在早期发育过程中功能的认识。