Constitutively Active ALK2 Receptor Mutants Require Type II Receptor Cooperation

Author:

Bagarova Jana1,Vonner Ashley J.1,Armstrong Kelli A.1,Börgermann Jan2,Lai Carol S. C.1,Deng Donna Y.1,Beppu Hideyuki3,Alfano Ivan4,Filippakopoulos Panagis4,Morrell Nicholas W.5,Bullock Alex N.4,Knaus Petra2,Mishina Yuji6,Yu Paul B.1

Affiliation:

1. Department of Medicine, Cardiovascular Division, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts, USA

2. Freie Universität Berlin and Charité, Institut für Chemie und Biochemie, and Berlin-Brandenburg School of Regenerative Therapies, Berlin, Germany

3. Department of Clinical Laboratory and Molecular Pathology, University of Toyama, Toyama, Japan

4. Structural Genomics Consortium, Nuffield Department of Clinical Medicine, University of Oxford, Oxford, United Kingdom

5. University of Cambridge School of Clinical Medicine, Department of Medicine, Addenbrooke's Hospital, Cambridge, United Kingdom

6. Department of Biologic and Materials Sciences, University of Michigan School of Dentistry, Ann Arbor, Michigan, USA

Abstract

ABSTRACT Constitutively activating mutations in receptor kinases recruit downstream effector pathways independently of upstream signaling, with consequences ranging from developmental syndromes to cancer. Classic fibrodysplasia ossificans progressiva (FOP) is a congenital syndrome resulting from highly conserved activating mutations of the glycine-serine-rich (GS) regulatory domain of ACVR1 , encoding bone morphogenetic protein (BMP) type I receptor ALK2, which lead to inappropriate signaling and heterotopic ossification of soft tissues. It is unclear if constitutively active mutant ALK2 receptors (caALK2) can function independently of signaling complexes with type II receptors and ligands. We found that ablation of BmpRII and ActRIIa abrogated BMP ligand-mediated and caALK2-mediated signaling and transcription in cells and disrupted caALK2-induced heterotopic ossification in mice. Signaling via GS domain ALK2 mutants could be restored by the expression of either BMP type II receptor. The contribution of BMP type II receptors was independent of their ligand-binding or kinase function but was dependent upon an intact cytoplasmic domain. These data demonstrate that GS domain ALK2 mutants act independently of upstream signaling but may require a nonenzymatic scaffolding function provided by type II receptors to form functional, apparently ligand-independent signaling complexes. These findings define the minimal requirements for signaling of GS domain ALK2 mutants, with implications for the therapeutic targeting of their activity in disease.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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