Polymorphisms of anti-Mullerian hormone signaling pathway in healthy Singapore women: population differences, endocrine effects and reproductive outcomes
GYNECOLOGICAL ENDOCRINOLOGY
Authors: Yu, Esther Dawen; Zhu, Huili; Li, Yu; Chua, Seok Eng; Indran, Inthrani Raja; Li, Jun; Yong, Eu-Leong
Abstract
In order to study the association of genetic polymorphisms of anti-Mullerian hormone (AMH) signaling pathway with endocrine changes and pregnancy outcomes, a total of 213 women of reproductive ages were recruited according to our inclusion and exclusion criteria between November 2011 and September 2014 in Singapore. Genotyping studies were performed using a minor groove binder primer/probe Taqman assay. The allele frequencies of the AMH Ile(49)Ser and AMHR2 -482A > G polymorphisms were analyzed in relation to female reproductive hormone levels, ovarian parameters, menstrual cycle lengths and pregnancy outcomes. AMH Ser allele frequency and AMHR2 G allele frequency of our Singapore population were compared with those of other populations reported in HapMap. The genotype distributions and allele frequencies for the AMH Ile(49)Ser and AMHR2 -482A > G polymorphisms were not associated with estradiol (E2) levels, ovarian parameters, menstrual cycle length, or pregnancy outcomes in our cohort. Our findings suggest that genetic variants in the AMH signal transduction pathway have population differences but do not appear to have significant effects on ovarian, endocrine, metabolic parameters and reproductive outcomes.
The AMH genotype (rs10407022 T > G) is associated with circulating AMH levels in boys, but not in girls
ENDOCRINE CONNECTIONS
Authors: Greiber, Iben Katinka; Hagen, Casper P.; Busch, Alexander Siegfried; Mieritz, Mikkel Grunnet; Aksglaede, Lise; Main, Katharina; Almstrup, Kristian; Juul, Anders
Abstract
Objective: Fetal anti-Mullerian hormone (AMH) is responsible for normal male sexual differentiation, and circulating AMH is used as a marker of testicular tissue in newborns with disorders of sex development. Little is known about the mechanism of action in postnatal life. A recent genome wide association study (GWAS) reported genetic variation of AMH affecting AMH levels in young men. This study investigated the effect of genetic variation of AMH and AMH type II receptor (AMHR2) (AMHrs10407022 T>G and AMHR2rs11170547 C>T) on circulating reproductive hormone levels and pubertal onset in boys and girls. Design and methods: This study is a combined longitudinal and cross-sectional study in healthy Danish boys and girls from the general population. We included 658 boys aged 5.8-19.8 years and 320 girls aged 5.6-16.5 years. The main outcome measures were genotyping of AMH and AMHR2, pubertal staging and serum levels of reproductive hormones. Results: AMHrs10407022T>G was associated with higher serum levels of AMH in prepubertal boys (TT: 575 pmol/L vs TG: 633 pmol/L vs GG: 837 pmol/L, P = 0.002) and adolescents (TT: 44 pmol/L vs TG: 58 pmol/L vs GG: 79 pmol/L, P < 0.001). Adolescent boys carrying the genetic variation also had lower levels of LH (TT: 3.0 IU/L vs TG: 2.8 IU/L vs GG: 1.8 IU/L, P = 0.012). Hormone levels in girls and pubertal onset in either sex did not seem to be profoundly affected by the genotypes. Conclusion: Our findings support recent GWAS results in young adults and expand our understanding of genetic variation affecting AMH levels even in boys prior to the pubertal decline of circulating AMH.