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男性、孕妇和非孕妇的循环 IGF1 和 IGF2 及 SNP 基因型。

Circulating IGF1 and IGF2 and SNP genotypes in men and pregnant and non-pregnant women.

机构信息

School of Paediatrics and Reproductive HealthRobinson Research Institute, University of Adelaide, Adelaide, South Australia 5005, Australia.

School of Paediatrics and Reproductive HealthRobinson Research Institute, University of Adelaide, Adelaide, South Australia 5005, Australia

出版信息

Endocr Connect. 2014 Sep;3(3):138-49. doi: 10.1530/EC-14-0068. Epub 2014 Aug 12.

Abstract

Circulating IGFs are important regulators of prenatal and postnatal growth, and of metabolism and pregnancy, and change with sex, age and pregnancy. Single-nucleotide polymorphisms (SNPs) in genes coding for these hormones associate with circulating abundance of IGF1 and IGF2 in non-pregnant adults and children, but whether this occurs in pregnancy is unknown. We therefore investigated associations of plasma IGF1 and IGF2 with age and genotype at candidate SNPs previously associated with circulating IGF1, IGF2 or methylation of the INS-IGF2-H19 locus in men (n=134), non-pregnant women (n=74) and women at 15 weeks of gestation (n=98). Plasma IGF1 concentrations decreased with age (P<0.001) and plasma IGF1 and IGF2 concentrations were lower in pregnant women than in non-pregnant women or men (each P<0.001). SNP genotypes in the INS-IGF2-H19 locus were associated with plasma IGF1 (IGF2 rs680, IGF2 rs1004446 and IGF2 rs3741204) and IGF2 (IGF2 rs1004446, IGF2 rs3741204 and H19 rs217727). In single SNP models, effects of IGF2 rs680 were similar between groups, with higher plasma IGF1 concentrations in individuals with the GG genotype when compared with GA (P=0.016), or combined GA and AA genotypes (P=0.003). SNPs in the IGF2 gene associated with IGF1 or IGF2 were in linkage disequilibrium, hence these associations could reflect other genotype variations within this region or be due to changes in INS-IGF2-H19 methylation previously associated with some of these variants. As IGF1 in early pregnancy promotes placental differentiation and function, lower IGF1 concentrations in pregnant women carrying IGF2 rs680 A alleles may affect placental development and/or risk of pregnancy complications.

摘要

循环 IGF 是产前和产后生长、代谢和妊娠的重要调节剂,并且会随着性别、年龄和妊娠而变化。编码这些激素的基因中的单核苷酸多态性 (SNP) 与非妊娠成年人和儿童循环 IGF1 和 IGF2 的丰度相关,但在妊娠期间是否发生这种情况尚不清楚。因此,我们研究了 IGF1 和 IGF2 与年龄和候选 SNP 基因型之间的关联,这些 SNP 先前与循环 IGF1、IGF2 或 INS-IGF2-H19 基因座的甲基化相关,研究对象为男性 (n=134)、非妊娠女性 (n=74) 和妊娠 15 周的女性 (n=98)。血浆 IGF1 浓度随年龄降低 (P<0.001),且孕妇的血浆 IGF1 和 IGF2 浓度低于非妊娠女性或男性 (均 P<0.001)。INS-IGF2-H19 基因座的 SNP 基因型与血浆 IGF1 (IGF2 rs680、IGF2 rs1004446 和 IGF2 rs3741204) 和 IGF2 (IGF2 rs1004446、IGF2 rs3741204 和 H19 rs217727) 相关。在单 SNP 模型中,IGF2 rs680 的影响在组间相似,与 GA 相比,GG 基因型个体的血浆 IGF1 浓度更高 (P=0.016),或与 GA 和 AA 基因型的组合相比更高 (P=0.003)。与 IGF1 或 IGF2 相关的 IGF2 基因中的 SNP 处于连锁不平衡状态,因此这些关联可能反映了该区域内其他基因型的变化,或者是由于先前与其中一些变体相关的 INS-IGF2-H19 甲基化的变化。因为妊娠早期的 IGF1 促进胎盘分化和功能,携带 IGF2 rs680 A 等位基因的孕妇 IGF1 浓度较低可能会影响胎盘发育和/或妊娠并发症的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c0d/4151385/e3799ef7651a/ec-03-138-g001.jpg

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