Anton Schulmann, Euijung Ryu, Vanessa Goncalves, Brandi Rollins, Michael Christiansen, Mark A Frye, Joanna Biernacka, Marquis P Vawter
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引用次数: 0
摘要
线粒体功能障碍与精神分裂症(SZ)和双相情感障碍(BD)有关。本综述探讨了线粒体基因与精神分裂症和躁狂症之间最新发表的文章和新的关联。通过基于基因和通路的方法发现了核编码线粒体变异与 SZ 的关联。两个控制区线粒体 DNA (mtDNA) SNPs(T16519C 和 T195C)均显示与 SZ 和 BD 有关。对位于细胞色素 B 氧化酶基因(CYTB,SZ = 11,311 例,对照 = 35,735 例)的 A15218G 的 4 项研究进行的回顾显示,该基因与 SZ 有中度关联(p = 2.15E-03)。另一个 mtDNA 等位基因 A12308G 名义上与 BD I 型受试者和 SZ 的精神病有关。首次发表的测试核编码基因与线粒体编码基因之间表观相互作用的研究显示,有证据表明 mtDNA 与核基因组之间存在潜在的 BD 相互作用。对 SZ 风险进行的类似分析显示了显著的联合效应(34 个核-线粒体 SNP 对的联合效应 p ≤ 5E-07)和投射神经元的显著富集。线粒体编码基因 CYTB 在 SZ 和 BD 的表观相互作用和 SZ 的单 SNP 关联中均有发现。考虑到人群分层和多基因风险评分,未来的研究工作将检验线粒体变异在精神疾病中的作用。
Novel Complex Interactions between Mitochondrial and Nuclear DNA in Schizophrenia and Bipolar Disorder.
Mitochondrial dysfunction has been associated with schizophrenia (SZ) and bipolar disorder (BD). This review examines recent publications and novel associations between mitochondrial genes and SZ and BD. Associations of nuclear-encoded mitochondrial variants with SZ were found using gene- and pathway-based approaches. Two control region mitochondrial DNA (mtDNA) SNPs, T16519C and T195C, both showed an association with SZ and BD. A review of 4 studies of A15218G located in the cytochrome B oxidase gene (CYTB, SZ = 11,311, control = 35,735) shows a moderate association with SZ (p = 2.15E-03). Another mtDNA allele A12308G was nominally associated with psychosis in BD type I subjects and SZ. The first published study testing the epistatic interaction between nuclear-encoded and mitochondria-encoded genes demonstrated evidence for potential interactions between mtDNA and the nuclear genome for BD. A similar analysis for the risk of SZ revealed significant joint effects (34 nuclear-mitochondria SNP pairs with joint effect p ≤ 5E-07) and significant enrichment of projection neurons. The mitochondria-encoded gene CYTB was found in both the epistatic interactions for SZ and BD and the single SNP association of SZ. Future efforts considering population stratification and polygenic risk scores will test the role of mitochondrial variants in psychiatric disorders.