TY - UNPB
T1 - Understanding the genetic complexity of puberty timing across the allele frequency spectrum
AU - ABCTB Investigators
AU - Kentistou, Katherine A
AU - Kaisinger, Lena R
AU - Stankovic, Stasa
AU - Vaudel, Marc
AU - de Oliveira, Edson M
AU - Messina, Andrea
AU - Walters, Robin G
AU - Liu, Xiaoxi
AU - Busch, Alexander S
AU - Helgason, Hannes
AU - Thompson, Deborah J
AU - Santon, Federico
AU - Petricek, Konstantin M
AU - Zouaghi, Yassine
AU - Huang-Doran, Isabel
AU - Gudbjartsson, Daniel F
AU - Bratland, Eirik
AU - Lin, Kuang
AU - Gardner, Eugene J
AU - Zhao, Yajie
AU - Jia, Raina
AU - Terao, Chikashi
AU - Riggan, Margie
AU - Bolla, Manjeet K
AU - Yazdanpanah, Mojgan
AU - Yazdanpanah, Nahid
AU - Bradfield, Jonath P
AU - Broer, Linda
AU - Campbell, Archie
AU - Chasman, Daniel I
AU - Cousminer, Diana L
AU - Franceschini, Nora
AU - Franke, Lude H
AU - Girotto, Giorgia
AU - He, Chunyan
AU - Järvelin, Marjo-Riitta
AU - Joshi, Peter K
AU - Kamatani, Yoichiro
AU - Karlsson, Robert
AU - Luan, Jian'an
AU - Lunetta, Kathryn L
AU - Mägi, Reedik
AU - Mangino, Massimo
AU - Smith, Albert V
AU - van der Most, Peter J
AU - Hübner, Hanna
AU - Nolte, Ilja M
AU - Oldehinkel, Albertine J
AU - Alizadeh, Behrooz Z
AU - Snieder, Harold
AU - Perry, John R. B.
AU - Ong, Ken K.
PY - 2023/6/20
Y1 - 2023/6/20
N2 - Pubertal timing varies considerably and has been associated with a range of health outcomes in later life. To elucidate the underlying biological mechanisms, we performed multi-ancestry genetic analyses in ∼800,000 women, identifying 1,080 independent signals associated with age at menarche. Collectively these loci explained 11% of the trait variance in an independent sample, with women at the top and bottom 1% of polygenic risk exhibiting a ∼11 and ∼14-fold higher risk of delayed and precocious pubertal development, respectively. These common variant analyses were supported by exome sequence analysis of ∼220,000 women, identifying several genes, including rare loss of function variants in
ZNF483 which abolished the impact of polygenic risk. Next, we implicated 660 genes in pubertal development using a combination of
in silico variant-to-gene mapping approaches and integration with dynamic gene expression data from mouse embryonic GnRH neurons. This included an uncharacterized G-protein coupled receptor
GPR83 , which we demonstrate amplifies signaling of
MC3R , a key sensor of nutritional status. Finally, we identified several genes, including ovary-expressed genes involved in DNA damage response that co-localize with signals associated with menopause timing, leading us to hypothesize that the ovarian reserve might signal centrally to trigger puberty. Collectively these findings extend our understanding of the biological complexity of puberty timing and highlight body size dependent and independent mechanisms that potentially link reproductive timing to later life disease.
AB - Pubertal timing varies considerably and has been associated with a range of health outcomes in later life. To elucidate the underlying biological mechanisms, we performed multi-ancestry genetic analyses in ∼800,000 women, identifying 1,080 independent signals associated with age at menarche. Collectively these loci explained 11% of the trait variance in an independent sample, with women at the top and bottom 1% of polygenic risk exhibiting a ∼11 and ∼14-fold higher risk of delayed and precocious pubertal development, respectively. These common variant analyses were supported by exome sequence analysis of ∼220,000 women, identifying several genes, including rare loss of function variants in
ZNF483 which abolished the impact of polygenic risk. Next, we implicated 660 genes in pubertal development using a combination of
in silico variant-to-gene mapping approaches and integration with dynamic gene expression data from mouse embryonic GnRH neurons. This included an uncharacterized G-protein coupled receptor
GPR83 , which we demonstrate amplifies signaling of
MC3R , a key sensor of nutritional status. Finally, we identified several genes, including ovary-expressed genes involved in DNA damage response that co-localize with signals associated with menopause timing, leading us to hypothesize that the ovarian reserve might signal centrally to trigger puberty. Collectively these findings extend our understanding of the biological complexity of puberty timing and highlight body size dependent and independent mechanisms that potentially link reproductive timing to later life disease.
U2 - 10.1101/2023.06.14.23291322
DO - 10.1101/2023.06.14.23291322
M3 - Preprint
C2 - 37503126
BT - Understanding the genetic complexity of puberty timing across the allele frequency spectrum
PB - MedRxiv
ER -