Swan, A.L.* ; Schütt, C. ; Rozman, J. ; Del Mar Muñiz Moreno, M.* ; Brandmaier, S. ; Simon, M.* ; Leuchtenberger, S. ; Griffiths, M.* ; Brommage, R. ; Keskivali-Bond, P.* ; Grallert, H. ; Werner, T.* ; Teperino, R. ; Becker, L. ; Miller, G. ; Moshiri, A.* ; Seavitt, J.R.* ; Cissell, D.D.* ; Meehan, T.F.* ; Acar, E.F.* ; Lelliott, C.J.* ; Flenniken, A.M.* ; Champy, M.F.* ; Sorg, T.* ; Ayadi, A.* ; Braun, R.E.* ; Cater, H.* ; Dickinson, M.E.* ; Flicek, P.* ; Gallegos, J.* ; Ghirardello, E.J.* ; Heaney, J.D.* ; Jacquot, S.* ; Lally, C.* ; Logan, J.G.* ; Teboul, L.* ; Mason, J.* ; Spielmann, N. ; McKerlie, C.* ; Murray, S.A.* ; Nutter, L.M.J.* ; Odfalk, K.F.* ; Parkinson, H.* ; Prochazka, J.* ; Reynolds, C.L.* ; Selloum, M.* ; Spoutil, F.* ; Svenson, K.L.* ; Vales, T.S.* ; Wells, S.E.* ; White, J.K.* ; Sedlacek, R.* ; Wurst, W. ; Lloyd, K.K.C.* ; Croucher, P.I.* ; Fuchs, H. ; Williams, G.R.* ; Bassett, D.* ; Gailus-Durner, V. ; Herault, Y.* ; Mallon, A.M.* ; Brown, S.D.M.* ; Mayer-Kuckuk, P. ; Hrabě de Angelis, M. ; IMPC Consortium (Aguilar-Pimentel, J.A. ; Amarie, O.V. ; Bürger, A. ; Calzada-Wack, J. ; Cho, Y.-L. ; Giesert, F. ; Garrett, L. ; Graw, J. ; Hörlein, A. ; Hölter, S.M. ; Klein-Rodewald, T. ; Kühn, R. ; Lengger, C. ; Marschall, S. ; Rathkolb, B. ; Sanz-Moreno, A. ; Seisenberger, C. ; Steinkamp, R. ; Stoeger, C. ; Treise, I. ; Zimprich, A.) ; Beckers, J.
Mouse mutant phenotyping at scale reveals novel genes controlling bone mineral density.
PLoS Genet. 16:e1009190 (2021)
The genetic landscape of diseases associated with changes in bone mineral density (BMD), such as osteoporosis, is only partially understood. Here, we explored data from 3,823 mutant mouse strains for BMD, a measure that is frequently altered in a range of bone pathologies, including osteoporosis. A total of 200 genes were found to significantly affect BMD. This pool of BMD genes comprised 141 genes with previously unknown functions in bone biology and was complementary to pools derived from recent human studies. Nineteen of the 141 genes also caused skeletal abnormalities. Examination of the BMD genes in osteoclasts and osteoblasts underscored BMD pathways, including vesicle transport, in these cells and together with in silico bone turnover studies resulted in the prioritization of candidate genes for further investigation. Overall, the results add novel pathophysiological and molecular insight into bone health and disease.
Impact Factor
Scopus SNIP
Web of Science
Times Cited
Scopus
Cited By
Altmetric
Publication type
Article: Journal article
Document type
Scientific Article
Thesis type
Editors
Keywords
Genome-wide Association; Osteogenesis Imperfecta; Animal-models; Sex; Collagen; Differentiation; Identification; Metaanalysis; Discovery; Mutation
Keywords plus
Language
english
Publication Year
2021
Prepublished in Year
2020
HGF-reported in Year
2020
ISSN (print) / ISBN
1553-7390
e-ISSN
1553-7404
ISBN
Book Volume Title
Conference Title
Conference Date
Conference Location
Proceedings Title
Quellenangaben
Volume: 16,
Issue: 12,
Pages: ,
Article Number: e1009190
Supplement: ,
Series
Publisher
Public Library of Science (PLoS)
Publishing Place
1160 Battery Street, Ste 100, San Francisco, Ca 94111 Usa
Day of Oral Examination
0000-00-00
Advisor
Referee
Examiner
Topic
University
University place
Faculty
Publication date
0000-00-00
Application date
0000-00-00
Patent owner
Further owners
Application country
Patent priority
Reviewing status
Peer reviewed
POF-Topic(s)
30201 - Metabolic Health
30202 - Environmental Health
90000 - German Center for Diabetes Research
30204 - Cell Programming and Repair
Research field(s)
Genetics and Epidemiology
PSP Element(s)
G-500600-001
G-500692-001
G-504091-001
G-504091-002
G-501900-069
G-500500-001
G-500600-004
G-500500-002
Grants
NHGRI NIH HHS
Copyright
Erfassungsdatum
2021-02-03