Processing of Anti-Müllerian Hormone Regulates Receptor Activation by a Mechanism Distinct from TGF-β

Author:

di Clemente Nathalie1,Jamin Soazik P.1,Lugovskoy Alexey2,Carmillo Paul2,Ehrenfels Christian2,Picard Jean-Yves1,Whitty Adrian3,Josso Nathalie1,Pepinsky R. Blake2,Cate Richard L.1

Affiliation:

1. Institut National de la Santé et de la Recherche Médicale U782 (N.d.C., S.P.J., J.-Y.P., N.J., R.L.C.), Université Paris-Sud, Unité Mixte de Recherche-S0782, and Assistance Publique-Hôpitaux de Paris, Hôpital Antoine Béclère, Clamart, F-92140, France

2. Biogen Idec, Inc. (A.L., P.C., C.E., R.B.P.), Cambridge, Massachusetts 02142

3. Department of Chemistry (A.W.), Boston University, Boston, Massachusetts 02215

Abstract

AbstractTGF-β family ligands are translated as prepropeptide precursors and are processed into mature C-terminal dimers that signal by assembling a serine/threonine kinase receptor complex containing type I and II components. Many TGF-β ligands are secreted in a latent form that cannot bind their receptor, due to the pro-region remaining associated with the mature ligand in a noncovalent complex after proteolytic cleavage. Here we show that anti-Müllerian hormone (AMH), a TGF-β family ligand involved in reproductive development, must be cleaved to bind its type II receptor (AMHRII), but dissociation of the pro-region from the mature C-terminal dimer is not required for this initial interaction. We provide direct evidence for this interaction by showing that the noncovalent complex binds to a soluble form of AMHRII in an ELISA format and to AMHRII immobilized on Sepharose. Binding of the noncovalent complex to Sepharose-coupled AMHRII induces dissociation of the pro-region from the mature C-terminal dimer, whereas no dissociation occurs after binding to immobilized AMH antibodies. The pro-region cannot be detected after binding of the AMH noncovalent complex to AMHRII expressed on COS cells, indicating that pro-region dissociation may occur as a natural consequence of receptor engagement on cells. Moreover, the mature C-terminal dimer is more active than the noncovalent complex in stimulating Sma- and Mad-related protein activation, suggesting that pro-region dissociation contributes to the assembly of the active receptor complex. AMH thus exemplifies a new mechanism for receptor engagement in which interaction with the type II receptor promotes pro-region dissociation to generate mature ligand.

Publisher

The Endocrine Society

Subject

Endocrinology,Molecular Biology,General Medicine

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