Mutations of schizophrenia risk gene SETD1A dysregulate synaptic function in human neurons.

IF 10.1 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Xiao Su, Hanwen Zhang, Yan Hong, Qian Yang, Le Wang, Tiffany Le, Jiayi Liu, Lasya Cheruvu, Emily Labour, Siwei Zhang, Karla Mendez-Maldonado, Anat Kreimer, Hongjun Song, Guo-Li Ming, Jubao Duan, Zhiping P Pang
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Abstract

Schizophrenia (SCZ) is a complex neuropsychiatric disorder associated with both common risk variants of small effect sizes and rare risk variants of high penetrance. Rare premature open reading frame (ORF) termination variants in SETD1A (SET Domain Containing 1A) show a strong association with SCZ; however, it remains largely unclear how rare premature ORF termination variants in SETD1A contribute to the pathophysiology of SCZ. To understand the impact of SETD1A rare premature ORF termination variants in human neurons, we CRISPR/Cas9-engineered five isogenic pairs of human induced pluripotent stem cells (iPSCs), with a recurrent heterozygous patient-specific premature ORF termination mutation c.4582-2delAG in two donor lines and a heterozygous frameshift mutation c.4596_4597insG (p. Leu1533fs) in three donor lines. These two mutations are predicted to cause a premature stop codon in exon 16 of SETD1A, leading to SETD1A haploinsufficiency. We found that these presumably loss-of-function (LoF) mutations caused the SETD1A mRNAs to be degraded by nonsense-mediated decay (NMD), accompanied by a reduction of full-length SETD1A protein level in iPSCs. We then characterized the morphological, electrophysiological, and transcriptomic impacts of SETD1A+/- LoF mutations in iPSC-derived human excitatory neurons induced by NGN2. We found that the SETD1A+/- exon-16 LoF mutations altered dendrite complexity, dysregulated synaptic transmission, and synaptic plasticity, likely by dysregulating genes involved in synaptic function. These results provide mechanistic insights into how SETD1A+/- exon-16 patient-specific LoF mutations affect neuron phenotypes that may be relevant to the pathophysiology of SCZ.

精神分裂症风险基因SETD1A突变导致人类神经元突触功能失调。
精神分裂症(SCZ)是一种复杂的神经精神疾病,与小效应大小的常见风险变异和高外显率的罕见风险变异相关。SETD1A (SET Domain Containing 1A)中罕见的过早开放阅读框(ORF)终止变异与SCZ有很强的相关性;然而,目前尚不清楚SETD1A中罕见的ORF过早终止变异如何促进SCZ的病理生理。为了了解SETD1A罕见的ORF过早终止变异对人类神经元的影响,我们利用CRISPR/ cas9技术对5对人类诱导多能干细胞(iPSCs)进行了基因工程改造,在2个供体系中存在复发性杂合患者特异性ORF过早终止突变c.4582-2delAG,在3个供体系中存在杂合移码突变c.4596_4597insG (p. Leu1533fs)。预计这两个突变会导致SETD1A外显子16过早终止密码子,导致SETD1A单倍不足。我们发现,这些可能的功能丧失(LoF)突变导致SETD1A mrna通过无义介导的衰变(NMD)降解,并伴随着iPSCs中SETD1A全长蛋白水平的降低。然后,我们表征了SETD1A+/- LoF突变对NGN2诱导的ipsc衍生的人类兴奋性神经元的形态学、电生理和转录组学影响。我们发现SETD1A+/-外显子16 LoF突变改变了树突复杂性、突触传递失调和突触可塑性,这可能是由参与突触功能的基因失调引起的。这些结果为SETD1A+/-外显子16患者特异性LoF突变如何影响可能与SCZ病理生理相关的神经元表型提供了机制见解。
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来源期刊
Molecular Psychiatry
Molecular Psychiatry 医学-精神病学
CiteScore
20.50
自引率
4.50%
发文量
459
审稿时长
4-8 weeks
期刊介绍: Molecular Psychiatry focuses on publishing research that aims to uncover the biological mechanisms behind psychiatric disorders and their treatment. The journal emphasizes studies that bridge pre-clinical and clinical research, covering cellular, molecular, integrative, clinical, imaging, and psychopharmacology levels.
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