首页> 美国卫生研究院文献>Frontiers in Psychiatry >Fundamental Role of Methylenetetrahydrofolate Reductase 677 C → T Genotype and Flavin Compounds in Biochemical Phenotypes for Schizophrenia and Schizoaffective Psychosis
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Fundamental Role of Methylenetetrahydrofolate Reductase 677 C → T Genotype and Flavin Compounds in Biochemical Phenotypes for Schizophrenia and Schizoaffective Psychosis

机译:亚甲基四氢叶酸还原酶677 C→T基因型和黄素类化合物在精神分裂症和分裂情感性精神病生化表型中的基础作用

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摘要

The Mental Health Biomarker Project (2010–2016) explored variables for psychosis in schizophrenia and schizoaffective disorder. Blood samples from 67, highly characterized symptomatic cases and 67 gender and age matched control participants were analyzed for methyl tetrahydrofolate reductase (MTHFR) 677C → T gene variants and for vitamin B6, B12 and D, folate, unbound copper, zinc cofactors for enzymes in the methylation cycle, and related catecholamine pathways. Urine samples were analyzed for indole-catecholamines, their metabolites, and oxidative-stress marker, hydroxylpyrolline-2-one (HPL). Rating scales were Brief Psychiatric Rating Scale, Positive and Negative Syndrome Scale, Global Assessment of Function scale, Clinical Global Impression (CGI) score, and Social and Occupational Functioning Assessment Scale (SOFAS). Analysis used Spearman’s correlates, receiver operating characteristics and structural equation modeling (SEM). The correlative pattern of variables in the overall participant sample strongly implicated monoamine oxidase (MAO) enzyme inactivity so the significant role of MAO’s cofactor flavin adenine nucleotide and its precursor flavin adenine mononucleotide (FMN) within the biochemical pathways was investigated and confirmed as 71% on SEM of the total sample. Splitting the data sets for MTHFR 677C → T polymorphism variants coding for the MTHFR enzyme, discovered that biochemistry variables relating to the wild-type enzyme differed markedly in pattern from those coded by the homozygous variant and that the hereozygous-variant pattern resembled the wild-type-coded pattern. The MTHFR 677C → T-wild and -heterozygous gene variants have a pattern of depleted vitamin cofactors characteristic of flavin insufficiency with under-methylation and severe oxidative stress. The second homozygous MTHFR 677TT pattern related to elevated copper:zinc ratio and a vitamin pattern related to flavin sufficiency and risk of over-methylation. The two gene variants and their different biochemical phenotypes govern findings in relationship to case-identification, illness severity, duration of illness, and functional disability in schizophrenia and schizoaffective psychosis, and establish a basis for trials of gene-guided precision treatment for the management of psychosis.
机译:心理健康生物标志物项目(2010-2016年)探讨了精神分裂症和精神分裂症患者精神病的变量。分析了67例特征性症状严重的病例和67例性别和年龄相匹配的对照组参与者的血样中四氢叶酸甲酯还原酶(MTHFR)677C→T基因的变异,并分析了维生素B6,B12和D,叶酸,未结合的铜,锌的辅酶因子。甲基化周期及相关的儿茶酚胺途径。分析了尿液样本中的吲哚-儿茶酚胺,它们的代谢产物和氧化应激标记物羟基吡咯烷-2-一(HPL)。评估量表包括简要精神病学量表量表,阳性和阴性综合症量表,功能总体评估量表,临床总体印象量(CGI)评分以及社交和职业功能评估量表(SOFAS)。分析使用Spearman的相关系数,接收器工作特性和结构方程模型(SEM)。总体参与者样本中变量的相关模式强烈暗示了单胺氧化酶(MAO)酶的失活,因此,对MAO辅因子黄素腺嘌呤核苷酸及其前体黄素腺嘌呤单核苷酸(FMN)在生化途径中的重要作用进行了调查,并确认为71%总样品的SEM。拆分编码MTHFR酶的MTHFR 677C→→T多态性变体的数据集后,发现与野生型酶相关的生化变量的模式与纯合变体所编码的模式显着不同,并且溶质变体模式与野生型相似。类型编码的模式。 MTHFR 677C→→T-野生型和杂合子基因变异体具有黄素功能不足,甲基化不足和严重的氧化应激的维生素辅因子消耗模式。第二个纯合的MTHFR 677TT模式与铜:锌比升高有关,而维生素模式与黄素充足和甲基化过度风险有关。这两种基因变体及其不同的生化表型决定了与精神分裂症和精神分裂症和精神分裂症的病例识别,疾病严重程度,疾病持续时间和功能障碍有关的发现,并为基因导向精准治疗的管理奠定了基础。精神病。

著录项

  • 期刊名称 Frontiers in Psychiatry
  • 作者

    Stephanie Fryar-Williams;

  • 作者单位
  • 年(卷),期 2016(7),-1
  • 年度 2016
  • 页码 172
  • 总页数 24
  • 原文格式 PDF
  • 正文语种
  • 中图分类 精神病学;
  • 关键词

    机译:精神病;MTHFR 677C→T多态性;核黄素;铜;精神分裂症;
  • 入库时间 2022-08-17 12:10:52

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