首页> 美国卫生研究院文献>American Journal of Human Genetics >Distinct Alterations in Tricarboxylic Acid Cycle Metabolites Associate with Cancer and Autism Phenotypes in Cowden Syndrome and Bannayan-Riley-Ruvalcaba Syndrome
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Distinct Alterations in Tricarboxylic Acid Cycle Metabolites Associate with Cancer and Autism Phenotypes in Cowden Syndrome and Bannayan-Riley-Ruvalcaba Syndrome

机译:三羧酸循环代谢产物与癌症和自闭症表型在卡登综合症和班纳延-里利-卢瓦尔卡巴综合症中的显着变化

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摘要

Germline heterozygous mutations cause subsets of Cowden syndrome (CS) and Bannayan-Riley-Ruvalcaba syndrome (BRRS); these subsets are characterized by high risks of breast, thyroid, and other cancers and, in one subset, autism spectrum disorder (ASD). Up to 10% of individuals with CS, CS-like syndrome, or BRRS have germline (succinate dehydrogenase, mitochondrial complex II) variants, which modify cancer risk. PTEN contributes to metabolic reprogramming; this is a well-established role in a cancer context. Relatedly, SDH sits at the crossroad of the electron transport chain and tricarboxylic acid (TCA) cycle, two central bioenergetic pathways. Intriguingly, and individuals have reduced SDH catalytic activity, resulting in succinate accumulation; this indicates a common genotype-independent biochemical alteration. Here, we conducted a TCA targeted metabolomics study on 511 individuals with CS, CS-like syndrome, or BRRS with various genotypes ( or , mutant or wild type [WT]) and phenotypes (cancer or ASD) and a series of 187 population controls. We found consistent TCA cycle metabolite alterations in cases with various genotypes and phenotypes compared to controls, and we found unique correlations of individual metabolites with particular genotype-phenotype combinations. Notably, increased isocitrate (p = 1.2 × 10 ), but reduced citrate (p = 5.0 × 10 ), were found to be associated with breast cancer in individuals with / . Conversely, increased lactate was associated with neurodevelopmental disorders regardless of genotype (p = 9.7 × 10 ); this finding was replicated in an independent validation series (n = 171) enriched for idiopathic ASD ( , p = 5.6 × 10 ). Importantly, we identified fumarate (p = 1.9 × 10 ) as a pertinent metabolite, distinguishing individuals who develop ASD from those who develop cancer. Our observations suggest that TCA cycle metabolite alterations are germane to the pathobiology of -related CS and BRRS, as well as genotype-independent ASD, with implications for potential biomarker and/or therapeutic value.
机译:生殖系杂合突变会导致Cowden综合征(CS)和Bannayan-Riley-Ruvalcaba综合征(BRRS)的子集;这些子集的特征是乳腺癌,甲状腺癌和其他癌症的高风险,其中之一是自闭症谱系障碍(ASD)。多达10%的CS,CS样综合征或BRRS患者具有种系(琥珀酸脱氢酶,线粒体复合体II)变异,这些变异会改变患癌症的风险。 PTEN有助于代谢重编程;这是在癌症环境中公认的角色。相关地,SDH处于电子传输链和三羧酸(TCA)循环的交汇处,这是两个重要的生物能途径。有趣的是,个体的SDH催化活性降低,导致琥珀酸积累。这表明不依赖基因型的常见生化改变。在这里,我们对511名具有各种基因型(或突变或野生型[WT])和表型(癌症或ASD)的CS,CS样综合征或BRRS个体进行了TCA靶向代谢组学研究,并进行了187个人群对照。我们发现与对照相比,在具有各种基因型和表型的情况下,TCA循环代谢物具有一致的变化,并且我们发现单个代谢物与特定基因型-表型组合的独特相关性。值得注意的是,发现患有/的个体的异柠檬酸升高(p = 1.2×10),而柠檬酸降低(p = 5.0×10)与乳腺癌有关。相反,无论基因型如何,乳酸增加与神经发育障碍有关(p = 9.7×10);这项发现被复制到一个独立的验证系列(n = 171)中,该验证系列富含特发性ASD(,p = 5.6×10)。重要的是,我们确定了富马酸盐(p = 1.9×10)是相关的代谢产物,从而将罹患ASD的人与患癌症的人区分开来。我们的观察结果表明,TCA循环代谢物的变化与相关CS和BRRS的病理生物学以及与基因型无关的ASD密切相关,对潜在的生物标志物和/或治疗价值具有影响。

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