Back to Search Start Over

Multi-trait analysis characterizes the genetics of thyroid function and identifies causal associations with clinical implications.

Authors :
Sterenborg RBTM
Steinbrenner I
Li Y
Bujnis MN
Naito T
Marouli E
Galesloot TE
Babajide O
Andreasen L
Astrup A
Åsvold BO
Bandinelli S
Beekman M
Beilby JP
Bork-Jensen J
Boutin T
Brody JA
Brown SJ
Brumpton B
Campbell PJ
Cappola AR
Ceresini G
Chaker L
Chasman DI
Concas MP
Coutinho de Almeida R
Cross SM
Cucca F
Deary IJ
Kjaergaard AD
Echouffo Tcheugui JB
Ellervik C
Eriksson JG
Ferrucci L
Freudenberg J
Fuchsberger C
Gieger C
Giulianini F
Gögele M
Graham SE
Grarup N
Gunjača I
Hansen T
Harding BN
Harris SE
Haunsø S
Hayward C
Hui J
Ittermann T
Jukema JW
Kajantie E
Kanters JK
Kårhus LL
Kiemeney LALM
Kloppenburg M
Kühnel B
Lahti J
Langenberg C
Lapauw B
Leese G
Li S
Liewald DCM
Linneberg A
Lominchar JVT
Luan J
Martin NG
Matana A
Meima ME
Meitinger T
Meulenbelt I
Mitchell BD
Møllehave LT
Mora S
Naitza S
Nauck M
Netea-Maier RT
Noordam R
Nursyifa C
Okada Y
Onano S
Papadopoulou A
Palmer CNA
Pattaro C
Pedersen O
Peters A
Pietzner M
Polašek O
Pramstaller PP
Psaty BM
Punda A
Ray D
Redmond P
Richards JB
Ridker PM
Russ TC
Ryan KA
Olesen MS
Schultheiss UT
Selvin E
Siddiqui MK
Sidore C
Slagboom PE
Sørensen TIA
Soto-Pedre E
Spector TD
Spedicati B
Srinivasan S
Starr JM
Stott DJ
Tanaka T
Torlak V
Trompet S
Tuhkanen J
Uitterlinden AG
van den Akker EB
van den Eynde T
van der Klauw MM
van Heemst D
Verroken C
Visser WE
Vojinovic D
Völzke H
Waldenberger M
Walsh JP
Wareham NJ
Weiss S
Willer CJ
Wilson SG
Wolffenbuttel BHR
Wouters HJCM
Wright MJ
Yang Q
Zemunik T
Zhou W
Zhu G
Zöllner S
Smit JWA
Peeters RP
Köttgen A
Teumer A
Medici M
Source :
Nature communications [Nat Commun] 2024 Jan 30; Vol. 15 (1), pp. 888. Date of Electronic Publication: 2024 Jan 30.
Publication Year :
2024

Abstract

To date only a fraction of the genetic footprint of thyroid function has been clarified. We report a genome-wide association study meta-analysis of thyroid function in up to 271,040 individuals of European ancestry, including reference range thyrotropin (TSH), free thyroxine (FT4), free and total triiodothyronine (T3), proxies for metabolism (T3/FT4 ratio) as well as dichotomized high and low TSH levels. We revealed 259 independent significant associations for TSH (61% novel), 85 for FT4 (67% novel), and 62 novel signals for the T3 related traits. The loci explained 14.1%, 6.0%, 9.5% and 1.1% of the total variation in TSH, FT4, total T3 and free T3 concentrations, respectively. Genetic correlations indicate that TSH associated loci reflect the thyroid function determined by free T3, whereas the FT4 associations represent the thyroid hormone metabolism. Polygenic risk score and Mendelian randomization analyses showed the effects of genetically determined variation in thyroid function on various clinical outcomes, including cardiovascular risk factors and diseases, autoimmune diseases, and cancer. In conclusion, our results improve the understanding of thyroid hormone physiology and highlight the pleiotropic effects of thyroid function on various diseases.<br /> (© 2024. The Author(s).)

Details

Language :
English
ISSN :
2041-1723
Volume :
15
Issue :
1
Database :
MEDLINE
Journal :
Nature communications
Publication Type :
Academic Journal
Accession number :
38291025
Full Text :
https://doi.org/10.1038/s41467-024-44701-9