National Institute of Genomic Medicine, Nutrigenetics, and Nutrigenomic Laboratory, Mexico City, Mexico.
Eur Rev Med Pharmacol Sci. 2023 Jan;27(2):694-703. doi: 10.26355/eurrev_202301_31072.
Alterations in the activity of the transcription factor 7-like 2 (TCF7L2) generate defects previously associated with neuropsychiatric disorders. We investigated the role of the TCF7L2 gene in major depressive disorder (MDD), type 2 diabetes (T2D), and MDD-T2D comorbidity. We tested whether TCF7L2 is in linkage to and/or in linkage disequilibrium (LD, namely association) with MDD, T2D, and MDD-T2D.
In 212 families with T2D and MDD in the Italian population, we analyzed 80 microarray-based SNPs using Pseudomarker software for linkage to and LD with T2D and MDD under the recessive model with complete penetrance (R1). In a secondary analysis, we tested the variants under the dominant models with complete penetrance (D1), recessive with incomplete penetrance (R2), and recessive with incomplete penetrance (R2).
We found several novel linkage signals and genetic associations. In addition, we found two new transcription-factor (TF) binding sites created by two risk variants found: the MDD-risk variant rs12255179 creates a new TF-binding site for the CCAAT/enhancer-binding protein α (C/EBPα), and the T2D-risk variant rs61872794 creates a new TF-binding site for the organic cation-uptake transporter (OCT1). Both new binding sites are related to insulin metabolism.
These results highlight the cross-interactivity between T2D and MDD. Further replication is needed in diverse ethnic groups.
转录因子 7 样 2(TCF7L2)活性的改变会导致先前与神经精神障碍相关的缺陷。我们研究了 TCF7L2 基因在重度抑郁症(MDD)、2 型糖尿病(T2D)和 MDD-T2D 共病中的作用。我们测试了 TCF7L2 是否与 MDD、T2D 和 MDD-T2D 连锁,以及是否与 MDD、T2D 和 MDD-T2D 存在连锁不平衡(LD,即关联)。
在意大利人群中,对 212 个有 T2D 和 MDD 的家族进行了分析,我们使用 Pseudomarker 软件分析了 80 个基于微阵列的 SNP,采用完全穿透的隐性模型(R1),对 T2D 和 MDD 进行连锁和 LD 分析。在二次分析中,我们采用完全穿透的显性模型(D1)、不完全穿透的隐性模型(R2)和不完全穿透的隐性模型(R2)测试了变体。
我们发现了几个新的连锁信号和遗传关联。此外,我们还发现了两个新的转录因子(TF)结合位点,这两个风险变异体是由 MDD 风险变异体 rs12255179 和 T2D 风险变异体 rs61872794 产生的,前者为 CCAAT/增强子结合蛋白α(C/EBPα)创造了一个新的 TF 结合位点,后者为有机阳离子摄取转运体(OCT1)创造了一个新的 TF 结合位点。这两个新的结合位点都与胰岛素代谢有关。
这些结果突出了 T2D 和 MDD 之间的交叉相互作用。需要在不同的种族群体中进行进一步的复制。