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Altered expression of histamine signaling genes in autism spectrum disorder

机译:组胺信号基因在自闭症谱系障碍中的表达变化

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摘要

The histaminergic system (HS) has a critical role in cognition, sleep and other behaviors. Although not well studied in autism spectrum disorder (ASD), the HS is implicated in many neurological disorders, some of which share comorbidity with ASD, including Tourette syndrome (TS). Preliminary studies suggest that antagonism of histamine receptors 1–3 reduces symptoms and specific behaviors in ASD patients and relevant animal models. In addition, the HS mediates neuroinflammation, which may be heightened in ASD. Together, this suggests that the HS may also be altered in ASD. Using RNA sequencing (RNA-seq), we investigated genome-wide expression, as well as a focused gene set analysis of key HS genes (HDC, HNMT, HRH1, HRH2, HRH3 and HRH4) in postmortem dorsolateral prefrontal cortex (DLPFC) initially in 13 subjects with ASD and 39 matched controls. At the genome level, eight transcripts were differentially expressed (false discovery rate <0.05), six of which were small nucleolar RNAs (snoRNAs). There was no significant diagnosis effect on any of the individual HS genes but expression of the gene set of HNMT, HRH1, HRH2 and HRH3 was significantly altered. Curated HS gene sets were also significantly differentially expressed. Differential expression analysis of these gene sets in an independent RNA-seq ASD data set from DLPFC of 47 additional subjects confirmed these findings. Understanding the physiological relevance of an altered HS may suggest new therapeutic options for the treatment of ASD.
机译:组胺能系统(HS)在认知,睡眠和其他行为中起关键作用。尽管对自闭症谱系障碍(ASD)的研究尚未很好,但HS与许多神经系统疾病有关,其中一些与ASD并存,包括Tourette综合征(TS)。初步研究表明,组胺受体1-3的拮抗作用可减轻ASD患者和相关动物模型的症状和特定行为。另外,HS介导神经炎症,在ASD中可能加剧。综上所述,这表明HS也可能在ASD中改变。我们使用RNA测序(RNA-seq),研究了全基因组表达以及最初对尸体后外侧前额叶皮层(DLPFC)中关键HS基因(HDC,HNMT,HRH1,HRH2,HRH3和HRH4)的基因组分析在13名患有自闭症的受试者和39名相匹配的对照组中。在基因组水平上,有八种转录物被差异表达(错误发现率<0.05),其中六种是小核仁RNA(snoRNA)。对任何单个HS基因都没有显着的诊断作用,但是HNMT,HRH1,HRH2和HRH3基因组的表达明显改变。策划的HS基因集也显着差异表达。在来自47个其他受试者的DLPFC的独立RNA-seq ASD数据集中,这些基因集的差异表达分析证实了这些发现。了解改变的HS的生理相关性可能会为ASD的治疗提供新的治疗选择。

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