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重度抑郁症中的犬尿氨酸途径:三个相关功能候选基因的单体型分析。

The kynurenine pathway in major depression: haplotype analysis of three related functional candidate genes.

机构信息

University Psychiatric Center K.U. Leuven, Campus Gasthuisberg, Leuven, Belgium.

出版信息

Psychiatry Res. 2011 Aug 15;188(3):355-60. doi: 10.1016/j.psychres.2011.03.012. Epub 2011 Apr 13.

Abstract

A consistent finding in major depressive disorder (MDD) research is dysfunction of the immune system. One of the relevant metabolic pathways in this regard is the kynurenine pathway. In patients with major depression, an imbalance between neuroprotective and neurotoxic arms of the pathway with lower plasma kynurenic acid concentration was demonstrated. Therefore, we investigated Single Nucleotide Polymorphism (SNP) and haplotype association of three candidate genes of the three enzymes involved in this metabolism. The three genes, namely, tryptophan hydroxylase 2 (TPH2), kynurenine 3 monooxygenase (KMO) and kynurenine amino transferase 3 (KAT III) SNPs and haplotype association analysis was performed in 338 (266 major depression and 72 bipolar depression) unrelated Caucasian patients with major depressive episodes and 310 age, gender and ethnicity matched controls. In sliding window analyses using PLINK of the haplotypes of KAT III, all windows which include the first SNP (rs12729558), the overall haplotype distribution (OMNIBUS) was significantly different between patients with a major depressive episode and control for all windows, with p-values ranging between 1.75 × 10=5 and 0.006. This is due to the haplotype CGCTCT (referring to 6 SNP window analysis), which is found in about 5.7% of patients and 1.9% of healthy controls. It was due to CGCTCT haplotype and the frequencies of this haplotype in both bipolar patients and patients with major depression showed significantly higher than the control population (p<0.001). This haplotype of KAT III gene CGCTCT may have effect on the function of this enzyme in formation of kynurenic acid in some patients with major depressive episodes.

摘要

在重度抑郁症(MDD)研究中,一个一致的发现是免疫系统功能障碍。在这方面,相关的代谢途径之一是犬尿酸途径。在患有重度抑郁症的患者中,表现为该途径的神经保护和神经毒性臂之间的失衡,伴有较低的血浆犬尿酸浓度。因此,我们研究了涉及该代谢的三个酶的三个候选基因的单核苷酸多态性(SNP)和单体型关联。在 338 名(266 名重度抑郁症和 72 名双相抑郁症)无关联的白种人重度抑郁症发作患者和 310 名年龄、性别和种族匹配的对照中,进行了色氨酸羟化酶 2(TPH2)、犬尿氨酸 3 单加氧酶(KMO)和犬尿氨酸氨基转移酶 3(KAT III)SNP 和单体型关联分析。使用 PLINK 进行 KAT III 单体型的滑动窗口分析,在所有窗口中,包括第一个 SNP(rs12729558),患者与对照组之间的总体单体型分布(OMNIBUS)在所有窗口中均有显著差异,p 值范围在 1.75×10=5 到 0.006 之间。这是由于 CGCTCT 单体型(指 6 SNP 窗口分析),其在大约 5.7%的患者和 1.9%的健康对照中发现。这是由于 CGCTCT 单体型,并且该单体型在双相患者和重度抑郁症患者中的频率显著高于对照组(p<0.001)。KAT III 基因 CGCTCT 单体型可能会影响某些重度抑郁症发作患者犬尿酸形成中该酶的功能。

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