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Basic Helix-loop-Helix Transcription Factor NEUROG1 and Schizophrenia: Effects on Illness Susceptibility MRI Brain Morphometry and Cognitive Abilities

机译:基本的螺旋环螺旋转录因子NEUROG1和精神分裂症:对疾病易感性MRI脑形态计量学和认知能力的影响。

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摘要

Transcription factors, including the basic helix-loop-helix (bHLH) family, regulate numerous genes and play vital roles in controlling gene expression. Consequently, transcription factor mutations can lead to phenotypic pleiotropy, and may be a candidate mechanism underlying the complex genetics and heterogeneous phenotype of schizophrenia. Neurogenin1 (NEUROG1; a.k.a. Ngn1 or Neurod3), a bHLH transcription factor encoded on a known schizophrenia linkage region in 5q31.1, induces glutamatergic and suppresses GABAergic neuronal differentiation during embryonic neurodevelopment. The goal of this study is to investigate NEUROG1 effects on schizophrenia risk and on phenotypic features of schizophrenia. We tested 392 patients with schizophrenia or schizoaffective disorder and 226 healthy normal volunteers for association with NEUROG1. Major alleles on two NEUROG1-associated SNPs (rs2344484-C-allele and rs8192558-G-allele) were significantly more prevalent among patients (p≤.0018). Approximately 80% of the sample also underwent high-resolution, multi-spectral magnetic resonance brain imaging and standardized neuropsychological assessment. There were significant rs2344484 genotype main effects on total cerebral gray matter (GM) and temporal GM volumes (p≤.05). C-allele-carrier patients and healthy volunteers had smaller total cerebral GM and temporal GM volumes than their respective T-homozygous counterparts. rs2344484-C-allele was further associated with generalized cognitive deficits among schizophrenia patients but not in healthy volunteers. Our findings replicate previous association between NEUROG1 and schizophrenia. More importantly, this is the first study to examine brain morphological and neurocognitive correlates of NEUROG1. rs2344484-C-allele may affect NEUROG1’s role in transcription regulation such that brain morphology and cognitive abilities are altered resulting in increased susceptibility to develop schizophrenia.
机译:转录因子,包括基本的螺旋-环-螺旋(bHLH)家族,调节许多基因,并在控制基因表达中起重要作用。因此,转录因子突变可导致表型多效性,并且可能是精神分裂症复杂遗传学和异质表型的潜在机制。 Neurogenin1(NEUROG1;又名Ngn1或Neurod3)是在5q31.1的已知精神分裂症连接区编码的bHLH转录因子,可诱导谷氨酸能并抑制胚胎神经发育过程中的GABA能神经元分化。这项研究的目的是调查NEUROG1对精神分裂症风险和精神分裂症的表型特征的影响。我们测试了392例精神分裂症或精神分裂症患者和226名健康正常志愿者与NEUROG1的关联。两个与NEUROG1相关的SNP(rs2344484-C-等位基因和rs8192558-G-等位基因)上的主要等位基因在患者中更为普遍(p≤.0018)。大约80%的样本还接受了高分辨率,多光谱磁共振脑成像和标准化的神经心理学评估。 rs2344484基因型主要影响总脑灰质(GM)和时间GM量(p≤.05)。 C等位基因携带者患者和健康志愿者的总脑GM和颞部GM量比其各自的T-纯合子要小。 rs2344484-C等位基因还与精神分裂症患者的普遍认知功能障碍相关,但与健康志愿者无关。我们的发现复制了NEUROG1和精神分裂症之间的先前联系。更重要的是,这是第一个研究NEUROG1的脑形态和神经认知相关性的研究。 rs2344484-C等位基因可能会影响NEUROG1在转录调控中的作用,从而改变大脑的形态和认知能力,从而导致患精神分裂症的可能性增加。

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