Reduced GS Domain Serine/Threonine Requirements of Fibrodysplasia Ossificans Progressiva Mutant Type I BMP Receptor ACVR1 in the Zebrafish

被引:2
|
作者
Allen, Robyn S. [1 ,2 ]
Jones, William D. [1 ]
Hale, Maya [1 ]
Warder, Bailey N. [1 ]
Shore, Eileen M. [2 ,3 ]
Mullins, Mary C. [1 ]
机构
[1] Univ Penn, Perelman Sch Med, Dept Cell & Dev Biol, Philadelphia, PA 19104 USA
[2] Univ Penn, Perelman Sch Med, Dept Orthopaed Surg, Philadelphia, PA USA
[3] Univ Penn, Perelman Sch Med, Dept Genet, Philadelphia, PA USA
关键词
BMPs/TGF-beta; bone modeling and remodeling; cell/tissue signaling-paracrine pathways; diseases and disorders of/related to bone; fibrodysplasia ossificans progressiva; molecular pathway development; SIGNAL-TRANSDUCTION; NATURAL-HISTORY; R206H MUTATION; PATTERN; SPECIFICITY; ACTIVATION; ALK2; FOP; DIFFERENTIATION; ANTEROPOSTERIOR;
D O I
10.1002/jbmr.4869
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Fibrodysplasia ossificans progressiva (FOP) is a rare human genetic condition characterized by altered skeletal development and extraskeletal bone formation. All cases of FOP are caused bymutations in the type I bonemorphogenetic protein (BMP) receptor gene ACVR1 that result in overactivation of the BMP signaling pathway. Activation of the wild-type ACVR1 kinase requires assembly of a tetrameric type I and II BMP receptor complex followed by phosphorylation of the ACVR1 GS domain by type II BMP receptors. Previous studies showed that the FOP-mutant ACVR1-R206H required type II BMP receptors and presumptive glycine/serine-rich (GS) domain phosphorylation for overactive signaling. Structural modeling of the ACVR1-R206H mutant kinase domain supports the idea that FOP mutations alter the conformation of the GS domain, but it is unclear how this leads to overactive signaling. Here we show, using a developing zebrafish embryo BMP signaling assay, that the FOP-mutant receptors ACVR1-R206H and -G328R have reduced requirements for GS domain phosphorylatable sites to signal compared towild-type ACVR1. Further, ligand-independent and ligand-dependent signaling through the FOP-mutant ACVR1 receptors have distinct GS domain phosphorylatable site requirements. ACVR1-G328R showed increased GS domain serine/threonine requirements for ligand-independent signaling compared to ACVR1-R206H, whereas it exhibited reduced serine/ threonine requirements for ligand-dependent signaling. Remarkably, while ACVR1-R206H does not require the type I BMP receptor partner, Bmpr1, to signal, a ligand-dependent GS domain mutant of ACVR1-R206H could signal independently of Bmpr1 only when Bmp7 ligand was overexpressed. Of note, unlike human ACVR1-R206H, the zebrafish paralog Acvr1l-R203H does not show increased signaling activity. However, in domain-swapping studies, the human kinase domain, but not the human GS domain, was sufficient to confer overactive signaling to the Acvr1l-R203H receptor. Together these results reflect the importance of GS domain activation and kinase domain functions in regulating ACVR1 signaling and identify mechanisms of reduced regulatory constraints conferred by FOP mutations. (c) 2023 American Society for Bone and Mineral Research (ASBMR).
引用
收藏
页码:1364 / 1385
页数:22
相关论文
共 11 条
  • [1] Fibrodysplasia ossificans progressiva mutant ACVR1 signals by multiple modalities in the developing zebrafish
    Allen, Robyn S.
    Tajer, Benjamin
    Shore, Eileen M.
    Mullins, Mary C.
    ELIFE, 2020, 9
  • [2] Mutation Detection in Activin A Receptor, Type I (ACVR1) Gene in Fibrodysplasia Ossificans Progressiva in An Iranian Family
    Morovvati, Ziba
    Morovvati, Saeid
    Alishiri, Gholamhossein
    Moosavi, Seyed Hossein
    Ranjbar, Reza
    Moghaddam, Yaser Bolouki
    CELL JOURNAL, 2014, 16 (01) : 91 - 94
  • [3] Dysregulated BMP signaling through ACVR1 impairs digit joint development in fibrodysplasia ossificans progressiva (FOP)
    Towler, O. Will
    Peck, Sun H.
    Kaplan, Frederick S.
    Shore, Eileen M.
    DEVELOPMENTAL BIOLOGY, 2021, 470 : 136 - 146
  • [4] The fibrodysplasia ossificans progressiva R206H ACVR1 mutation activates BMP-independent chondrogenesis and zebrafish embryo ventralization
    Shen, Qi
    Little, Shawn C.
    Xu, Meiqi
    Haupt, Julia
    Ast, Cindy
    Katagiri, Takenobu
    Mundlos, Stefan
    Seemann, Petra
    Kaplan, Frederick S.
    Mullins, Mary C.
    Shore, Eileen M.
    JOURNAL OF CLINICAL INVESTIGATION, 2009, 119 (11) : 3462 - 3472
  • [5] A novel ACVR1 mutation in the glycine/serine-rich domain found in the most benign case of a fibrodysplasia ossificans progressiva variant reported to date
    Gregson, Celia L.
    Hollingworth, Peter
    Williams, Martin
    Petrie, Kirsten A.
    Bullock, Alex N.
    Brown, Matthew A.
    Tobias, Jon H.
    Triffitt, James T.
    BONE, 2011, 48 (03) : 654 - 658
  • [6] Overexpression of Wild-Type ACVR1 in Fibrodysplasia Ossificans Progressiva Mice Rescues Perinatal Lethality and Inhibits Heterotopic Ossification
    Yamamoto, Masakazu
    Stoessel, Sean J.
    Yamamoto, Shoko
    Goldhamer, David J.
    JOURNAL OF BONE AND MINERAL RESEARCH, 2022, 37 (11) : 2077 - 2093
  • [7] The Type I BMP Receptor ACVR1/ALK2 is Required for Chondrogenesis During Development
    Rigueur, Diana
    Brugger, Sean
    Anbarchian, Teni
    Kim, Jong Kil
    Lee, YooJin
    Lyons, Karen M.
    JOURNAL OF BONE AND MINERAL RESEARCH, 2015, 30 (04) : 733 - 741
  • [8] Functional Testing of Bone Morphogenetic Protein (BMP) Pathway Variants Identified on Whole-Exome Sequencing in a Patient with Delayed-Onset Fibrodysplasia Ossificans Progressiva (FOP) Using ACVR1R206H-Specific Human Cellular and Zebrafish Models
    Wentworth, Kelly L.
    Lalonde, Robert L.
    Groppe, Jay C.
    Brewer, Niambi
    Moody, Tania
    Hansberry, Steven
    Taylor, Kimberly E.
    Shore, Eileen M.
    Kaplan, Frederick S.
    Pignolo, Robert J.
    Yelick, Pamela C.
    Hsiao, Edward C.
    JOURNAL OF BONE AND MINERAL RESEARCH, 2022, 37 (11) : 2058 - 2076
  • [9] The ACVR1 R206H mutation found in fibrodysplasia ossificans progressiva increases human induced pluripotent stem cell-derived endothelial cell formation and collagen production through BMP-mediated SMAD1/5/8 signaling
    Emilie Barruet
    Blanca M. Morales
    Wint Lwin
    Mark P. White
    Christina V. Theodoris
    Hannah Kim
    Ashley Urrutia
    Sarah Anne Wong
    Deepak Srivastava
    Edward C. Hsiao
    Stem Cell Research & Therapy, 7
  • [10] The ACVR1 R206H mutation found in fibrodysplasia ossificans progressiva increases human induced pluripotent stem cell-derived endothelial cell formation and collagen production through BMP-mediated SMAD1/5/8 signaling
    Barruet, Emilie
    Morales, Blanca M.
    Lwin, Wint
    White, Mark P.
    Theodoris, Christina V.
    Kim, Hannah
    Urrutia, Ashley
    Wong, Sarah Anne
    Srivastava, Deepak
    Hsiao, Edward C.
    STEM CELL RESEARCH & THERAPY, 2016, 7