Genetic variations in IGF2BP2 and CAPN10 and their interaction with environmental factors increase gestational diabetes mellitus risk in Chinese women.

IF 2.6 3区 生物学 Q2 GENETICS & HEREDITY Gene Pub Date : 2025-03-15 Epub Date: 2025-01-09 DOI:10.1016/j.gene.2025.149226
Runqiu Yang, Xin Wang, Yi Zhang, Lei Jin, Kai Zhao, Juan Chen, Xuejun Shang, Yuanzhong Zhou, Hongsong Yu
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Abstract

Aim: This study aims to investigate the association of the genetic variations in IGF2BP2 and CAPN10 as well as gene-environment interactions with the risk of gestational diabetes (GDM) in Chinese women.

Materials and methods: A total of 1,566 pregnant Chinese women participated in this case-control study. We employed targeted next-generation sequencing to analyze specific SNPs in IGF2BP2 (rs11927381, rs1470579, rs4402960, rs7640539) and CAPN10/rs2975760. Various genetic models were used to assess the associations of these polymorphisms with GDM risk. Gene-gene and gene-environment interactions were examined using GMDR to identify interaction models, Subsequently, logistic regression was employed to confirm the significance of these models and to evaluate their impact on GDM susceptibility.

Results: Our study identified significant associations between the C allele of IGF2BP2/rs11927381 and an increased GDM susceptibility in both dominant (P = 0.031, OR = 1.247) and heterozygote (P = 0.043, OR = 1.239) gene models. Conversely, the heterozygote TC genotype of CAPN10/rs2975760 was associated with a reduced risk of GDM (P = 0.046, OR = 0.766). Increased BMI and O3 levels were linked to a higher GDM susceptibility. We discovered interactions between CAPN10/rs2975760 CC and IGF2BP2/rs11927381 TC genotype that exacerbated GDM risk (P = 0.022, OR = 11.337). Furthermore, interactions between IGF2BP2/rs11927381 and environmental factors were observed, indicating increased GDM risks (BMI: P = 0.004, OR = 1.011; O3: P = 0.013, OR = 1.002; PM2.5: P = 0.042, OR = 1.005;BC: P = 0.048, OR = 1.094; NO3-:P = 0.045, OR = 1.024).

Conclusion: GDM is significantly associated with IGF2BP2/rs11927381 and CAPN10/rs2975760 polymorphisms as well as exposure to O3. Furthermore, the interaction between the CAPN10/rs2975760 CC genotype and IGF2BP2/rs11927381 TC genotype, as well as environmental factors (O3, PM2.5, BMI), significantly increases the risk of GDM in Chinese women.

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IGF2BP2和CAPN10基因变异及其与环境因素的相互作用增加了中国妇女妊娠期糖尿病的风险。
目的:本研究旨在探讨IGF2BP2和CAPN10基因变异以及基因-环境相互作用与中国女性妊娠糖尿病(GDM)风险的关系。材料与方法:共有1566名中国孕妇参与本病例对照研究。我们采用靶向新一代测序方法分析IGF2BP2基因(rs11927381、rs1470579、rs4402960、rs7640539)和CAPN10/rs2975760的特异性snp。各种遗传模型被用来评估这些多态性与GDM风险的关系。采用GMDR检测基因-基因和基因-环境相互作用,确定相互作用模型,随后采用logistic回归验证这些模型的显著性,并评估其对GDM易感性的影响。结果:我们的研究发现IGF2BP2/rs11927381的C等位基因与显性(P = 0.031,OR = 1.247)和杂合子(P = 0.043,OR = 1.239)基因模型中GDM易感性增加之间存在显著关联。相反,CAPN10/rs2975760杂合子TC基因型与GDM风险降低相关(P = 0.046,OR = 0.766)。BMI和O3水平升高与GDM易感性升高有关。我们发现CAPN10/rs2975760 CC和IGF2BP2/rs11927381 TC基因型之间的相互作用会增加GDM的风险(P = 0.022,OR = 11.337)。此外,IGF2BP2/rs11927381与环境因素之间存在相互作用,表明GDM风险增加(BMI: P = 0.004,OR = 1.011;O3: p = 0.013,或 = 1.002;0.042 PM2.5: P = 或 = 1.005;公元前:P = 0.048,或 = 1.094;NO3: 0.045 P = 或 = 1.024)。结论:GDM与IGF2BP2/rs11927381和CAPN10/rs2975760多态性及O3暴露显著相关。此外,CAPN10/rs2975760 CC基因型和IGF2BP2/rs11927381 TC基因型的相互作用以及环境因素(O3、PM2.5、BMI)显著增加了中国女性GDM的风险。
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来源期刊
Gene
Gene 生物-遗传学
CiteScore
6.10
自引率
2.90%
发文量
718
审稿时长
42 days
期刊介绍: Gene publishes papers that focus on the regulation, expression, function and evolution of genes in all biological contexts, including all prokaryotic and eukaryotic organisms, as well as viruses.
期刊最新文献
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