Xia Yin, Schneyer Alan L
Program in Membrane Biology and Division of Nephrology, Center for Systems Biology, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts 02114, USA.
J Endocrinol. 2009 Jul;202(1):1-12. doi: 10.1677/JOE-08-0549. Epub 2009 Mar 9.
Activin was discovered in the 1980s as a gonadal protein that stimulated FSH release from pituitary gonadotropes and was thought of as a reproductive hormone. In the ensuing decades, many additional activities of activin were described and it was found to be produced in a wide variety of cell types at nearly all stages of development. Its signaling and actions are regulated intracellularly and by extracellular antagonists. Over the past 5 years, a number of important advances have been made that clarify our understanding of the structural basis for signaling and regulation, as well as the biological roles of activin in stem cells, embryonic development and in adults. These include the crystallization of activin in complex with the activin type II receptor ActRIIB, or with the binding proteins follistatin and follistatin-like 3, as well as identification of activin's roles in gonadal sex development, follicle development, luteolysis, beta-cell proliferation and function in the islet, stem cell pluripotency and differentiation into different cell types and in immune cells. These advances are reviewed to provide perspective for future studies.
激活素于20世纪80年代被发现,是一种性腺蛋白,可刺激垂体促性腺细胞释放促卵泡激素,被认为是一种生殖激素。在随后的几十年里,人们描述了激活素的许多其他活性,并发现它在几乎所有发育阶段的多种细胞类型中产生。其信号传导和作用在细胞内和细胞外拮抗剂的作用下受到调节。在过去5年中,取得了一些重要进展,这些进展阐明了我们对信号传导和调节的结构基础以及激活素在干细胞、胚胎发育和成人中的生物学作用的理解。这些进展包括激活素与激活素II型受体ActRIIB或与结合蛋白卵泡抑素和卵泡抑素样3形成复合物的结晶,以及确定激活素在性腺性别发育、卵泡发育、黄体溶解、胰岛β细胞增殖和功能、干细胞多能性以及分化为不同细胞类型和免疫细胞中的作用。本文对这些进展进行综述,为未来研究提供参考。