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Genome-wide association meta-analysis for total thyroid hormone levels in Croatian population (CROSBI ID 257671)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Gunjača, Ivana ; Matana, Antonela ; Boutin, Thibaud ; Torlak, Vesela ; Punda, Ante ; Polašek, Ozren ; Boraska Perica, Vesna ; Hayward, Caroline ; Zemunik, Tatijana ; Barbalić, Maja Genome-wide association meta-analysis for total thyroid hormone levels in Croatian population // Journal of human genetics, 64 (2019), 473-480. doi: 10.1038/s10038-019-0586-4

Podaci o odgovornosti

Gunjača, Ivana ; Matana, Antonela ; Boutin, Thibaud ; Torlak, Vesela ; Punda, Ante ; Polašek, Ozren ; Boraska Perica, Vesna ; Hayward, Caroline ; Zemunik, Tatijana ; Barbalić, Maja

engleski

Genome-wide association meta-analysis for total thyroid hormone levels in Croatian population

Thyroid hormones (THs) are key regulators of cellular growth, development, and metabolism. The thyroid gland secretes two THs, thyroxine (T4) and triiodothyronine (T3), into the plasma where they are almost all bound reversibly to plasma proteins. Free forms of THs are metabolically active, however, they represent a very small fraction of total TH levels. No genome-wide studies have been performed to date on total TH levels, comprising of protein-bound and free forms of THs. To detect genetic variants associated with total TH levels, we carried out the first GWAS meta-analysis of total T4 levels in 1 121 individuals from two Croatian cohorts (Split and Korcula). The top association in GWAS meta-analysis of total T4 was detected for an intronic variant within SLC22A9 gene (rs12282281, P = 4.38 x 10- 7). SLC22A9 encodes for an organic anion transporter protein expressed predominantly in the liver and belongs to the superfamily of solute carriers (SLC), a large group of transport membrane proteins. The transport of THs across the plasma membrane in peripheral tissues is facilitated by the membrane proteins, and all TH transport proteins known to date belong to the same SLC superfamily as SLC22A9. These results suggest a potential role for SLC22A9 as a novel transporter protein of THs.

Thyroid hormones, genome-wide association analyses, meta-analysis, transport protein

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Podaci o izdanju

64

2019.

473-480

objavljeno

1434-5161

1435-232X

10.1038/s10038-019-0586-4

Povezanost rada

Temeljne medicinske znanosti

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