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1.
Reproduction ; 132(2): 207-15, 2006 Aug.
Article in English | MEDLINE | ID: mdl-16885530

ABSTRACT

Activins, as members of the transforming growth factor-beta superfamily, control and orchestrate many physiological processes and are vital for the development, growth and functional integrity of most tissues, including the pituitary. Activins produced by pituitary cells work in conjunction with central, peripheral, and other local factors to influence the function of gonadotropes and maintain a normal reproductive axis. Follistatin, also produced by the pituitary, acts as a local buffer to bind activin and modulate its bioactivity. On the other hand, inhibins of gonadal origin provide an endocrine feedback signal to antagonize activin signaling in cells that express the inhibin co-receptor, betaglycan, such as gonadotropes. This review highlights the pituitary roles of activin and the mechanisms through which these actions are modulated by inhibin and follistatin.


Subject(s)
Activins/metabolism , Inhibins/metabolism , Pituitary Gland/metabolism , Reproduction/physiology , Signal Transduction/physiology , Transforming Growth Factor beta/metabolism , Animals , Female , Follicle Stimulating Hormone/metabolism , Follistatin/metabolism , Humans , Male
2.
Mol Cell Endocrinol ; 225(1-2): 29-36, 2004 Oct 15.
Article in English | MEDLINE | ID: mdl-15451565

ABSTRACT

The precise regulation of the anterior pituitary is achieved by the cell-specific and combined actions of central, peripheral and local factors. Activins, inhibins, and follistatins were first discovered as gonadal factors with actions on FSH production from pituitary gonadotropes. With the realization that these factors are expressed in a wide array of tissues, including the pituitary, it became apparent that the functional importance of activins, inhibins, and follistatins extends beyond the reproductive axis and that they often exert their effects by autocrine/paracrine mechanisms. As members of the TGF-beta superfamily, activins and inhibins control and orchestrate many physiological processes and are vital for the development, the growth, and the functional integrity of most tissues, including the pituitary. Activins exert effects on multiple pituitary cell types but the best-characterized pituitary targets of the autocrine/paracrine function of activins are the gonadotropes. The autocrine/paracrine function of the activin-binding proteins, follistatins, constitutes an important local mechanism to modulate activin bioactivity while the restricted actions of gonadal inhibins to betaglycan-expressing gonadotropes provides a secondary mode of regulation of cell-specific actions of activins. The aim of this review is to highlight and evaluate experimental evidence that supports the roles of activins, inhibins, and follistatins as autocrine, paracrine, and/or endocrine modulators of the pituitary.


Subject(s)
Cell Communication/physiology , Gonadal Hormones/physiology , Pituitary Gland/physiology , Activins/genetics , Activins/physiology , Animals , Autocrine Communication/physiology , Follistatin/physiology , Gonadal Hormones/genetics , Humans , Inhibins/genetics , Inhibins/physiology , Paracrine Communication/physiology , Pituitary Gland/metabolism
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