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精神分裂症风险变异的神经调节蛋白1(NRG1)基因对胎儿期和出生后早期人类新皮质发育过程中NRG1-IV剪接的影响。

Effects of schizophrenia risk variation in the NRG1 gene on NRG1-IV splicing during fetal and early postnatal human neocortical development.

作者信息

Paterson Clare, Wang Yanhong, Kleinman Joel E, Law Amanda J

出版信息

Am J Psychiatry. 2014 Sep;171(9):979-89. doi: 10.1176/appi.ajp.2014.13111518.

Abstract

OBJECTIVE

Neuregulin 1 (NRG1) is a multifunctional neurotrophin that mediates neurodevelopment and schizophrenia risk. The NRG1 gene undergoes extensive alternative splicing, and association of brain NRG1 type IV isoform expression with the schizophrenia-risk polymorphism rs6994992 is a potential mechanism of risk. Novel splice variants of NRG1-IV (NRG1-IVNV), with predicted unique signaling capabilities, have been cloned in fetal brain tissue. The authors investigated the temporal dynamics of transcription of NRG1-IVNV, compared with the major NRG1 isoforms, across human prenatal and postnatal prefrontal cortical development, and they examined the association of rs6994992 with NRG1-IVNV expression.

METHOD

NRG1 type I-IV and NRG1-IVNV isoforms were evaluated with quantitative real-time polymerase chain reaction in human postmortem prefrontal cortex tissue samples at 14 to 39 weeks gestation and postnatal ages 0-83 years. The association of rs6994992 genotype with NRG1-IVNV expression and the subcellular distribution and proteolytic processing of NRG1-IVNV isoforms were also determined.

RESULTS

Expression of NRG1 types I, II, and III was temporally regulated during prenatal and postnatal neocortical development. NRG1-IVNV was expressed from 16 weeks gestation until age 3. Homozygosity for the schizophrenia risk allele (T) of rs6994992 conferred lower cortical NRG1-IVNV levels. Assays showed that NRG1-IVNV is a novel nuclear-enriched, truncated NRG1 protein resistant to proteolytic processing.

CONCLUSIONS

To the authors' knowledge, this study provides the first quantitative map of NRG1 isoform expression during human neocortical development and aging. It identifies a potential mechanism of early developmental risk for schizophrenia at the NRG1 locus, involving a novel class of NRG1 proteins.

摘要

目的

神经调节蛋白1(NRG1)是一种多功能神经营养因子,介导神经发育及精神分裂症风险。NRG1基因经历广泛的可变剪接,脑内IV型NRG1亚型表达与精神分裂症风险多态性rs6994992之间的关联是一种潜在的风险机制。具有预测独特信号传导能力的新型NRG1-IV剪接变体(NRG1-IVNV)已在胎儿脑组织中克隆出来。作者研究了在人类产前和产后前额叶皮质发育过程中,与主要NRG1亚型相比,NRG1-IVNV转录的时间动态变化,并检测了rs6994992与NRG1-IVNV表达的关联。

方法

采用定量实时聚合酶链反应评估妊娠14至39周以及出生后0至83岁的人类死后前额叶皮质组织样本中I-IV型NRG1和NRG1-IVNV亚型。还确定了rs6994992基因型与NRG1-IVNV表达的关联以及NRG1-IVNV亚型的亚细胞分布和蛋白水解过程。

结果

I、II和III型NRG1的表达在产前和产后新皮质发育过程中受到时间调控。NRG1-IVNV从妊娠16周开始表达直至3岁。rs6994992的精神分裂症风险等位基因(T)纯合子导致皮质NRG1-IVNV水平降低。检测表明,NRG1-IVNV是一种新型的富含细胞核的截短型NRG1蛋白,对蛋白水解过程具有抗性。

结论

据作者所知,本研究提供了人类新皮质发育和衰老过程中NRG1亚型表达的首张定量图谱。它确定了NRG1基因座处精神分裂症早期发育风险的潜在机制,涉及一类新型的NRG1蛋白。

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