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Pleiotropy of autism-associated chromatin regulators.自闭症相关染色质调控因子的多效性。
Development. 2023 Jul 15;150(14). doi: 10.1242/dev.201515. Epub 2023 Jul 18.
2
Neuron-specific protein network mapping of autism risk genes identifies shared biological mechanisms and disease-relevant pathologies.自闭症风险基因的神经元特异性蛋白质网络图谱揭示了共同的生物学机制和与疾病相关的病理特征。
Cell Rep. 2022 Nov 22;41(8):111678. doi: 10.1016/j.celrep.2022.111678.
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Genotype-Phenotype Comparison in POGZ-Related Neurodevelopmental Disorders by Using Clinical Scoring.使用临床评分进行 POGZ 相关神经发育障碍的基因型-表型比较。
Genes (Basel). 2022 Jan 15;13(1):154. doi: 10.3390/genes13010154.
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New Candidates for Autism/Intellectual Disability Identified by Whole-Exome Sequencing.全外显子测序鉴定出自闭症/智力障碍的新候选基因。
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Investigation the Relationship of Autism Spectrum Disorder and Genes.研究自闭症谱系障碍与基因的关系。 不过原文中“Investigation”应改为“Investigating”才正确。
Noro Psikiyatr Ars. 2021 Aug 26;58(3):171-175. doi: 10.29399/npa.27407. eCollection 2021.
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Autism Spectrum Disorder Genetics and the Search for Pathological Mechanisms.自闭症谱系障碍遗传学与病理性机制研究
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Pogz deficiency leads to transcription dysregulation and impaired cerebellar activity underlying autism-like behavior in mice.Pogz 缺乏导致转录失调和小脑活动受损,从而导致小鼠出现类似自闭症的行为。
Nat Commun. 2020 Nov 17;11(1):5836. doi: 10.1038/s41467-020-19577-0.
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Clinical Assessment, Genetics, and Treatment Approaches in Autism Spectrum Disorder (ASD).自闭症谱系障碍(ASD)的临床评估、遗传学和治疗方法。
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Pathogenic POGZ mutation causes impaired cortical development and reversible autism-like phenotypes.致病性 POGZ 突变导致皮质发育障碍和可逆转的自闭症样表型。
Nat Commun. 2020 Feb 26;11(1):859. doi: 10.1038/s41467-020-14697-z.
10
Large-Scale Exome Sequencing Study Implicates Both Developmental and Functional Changes in the Neurobiology of Autism.大规模外显子组测序研究表明自闭症的神经生物学既有发育性变化也有功能性变化。
Cell. 2020 Feb 6;180(3):568-584.e23. doi: 10.1016/j.cell.2019.12.036. Epub 2020 Jan 23.

非综合征型自闭症谱系障碍的基因变异研究

Investigation of Gene Variants in Non-Syndromic Autism Spectrum Disorder.

作者信息

Tozkır Jülide, Yıldırım Gökberk, Demir Selma, Palabıyık Orkide, Görker Işık, Gürkan Hakan

机构信息

Trakya University Vocational School of Health Services, Edirne, Turkey.

Atlascro Clinical Research Coordinator, Edirne, Turkey.

出版信息

Noro Psikiyatr Ars. 2024 Aug 9;67(3):208-212. doi: 10.29399/npa.28625. eCollection 2024.

DOI:10.29399/npa.28625
PMID:39258134
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11382568/
Abstract

INTRODUCTION

Genetic factors play an important role in the etiopathogenesis of autism spectrum disorder (ASD). The Pogo Transposable Element with ZNF Domain protein () gene (MIM*614787) has been reported to be one of the most frequently mutated genes associated with ASD. This study aims to analyze the exonic regions of the gene in individuals diagnosed with non-syndromic ASD.

METHODS

Fifty-one non-syndromic cases diagnosed with ASD according to the DSM-V diagnostic criteria, aged 2-18 years, were included in the study. The healthy control group consisted of 50 children of similar age groups without neurodevelopmental problems. Amplicons produced using deep intronic primers covering the mRNA-encoded regions of the POGZ gene from at least 50 base pairs were sequenced by Next Generation Sequencing Analysis.

RESULTS

No pathogenic or likely pathogenic variants reported in open-access databases (ClinVar, HGMD, etc.) were detected in the case group. In the ASD and healthy control groups, rs113396244, rs11204811, rs779479223, rs772352054, rs3831142, rs112072925, rs227453 and rs142860188 variants were determined. The rs3831142, rs112072925, rs2274535, rs142860188 variants were found statistically significant in the ASD group. The distribution of the cases with detected single nucleotide polymorphisms (SNPs) according to gender was not statistically significant.

CONCLUSION

The variants identified as statistically significant within the patient group are situated in regions that encompass both the HP1-ZNF and DDE domains of the protein. Given the crucial role that the DDE domain plays, particularly in fetal brain development and neurogenesis, these four variants may potentially possess modifying and/or predisposing effects in the context of ASD.

摘要

引言

遗传因素在自闭症谱系障碍(ASD)的病因发病机制中起重要作用。据报道,含锌指结构域的Pogo转座元件蛋白()基因(MIM*614787)是与ASD相关的最常发生突变的基因之一。本研究旨在分析被诊断为非综合征性ASD的个体中该基因的外显子区域。

方法

本研究纳入了51例根据《精神疾病诊断与统计手册》第五版(DSM-V)诊断标准诊断为非综合征性ASD的病例,年龄在2至18岁之间。健康对照组由50名年龄相仿且无神经发育问题的儿童组成。使用覆盖POGZ基因mRNA编码区域至少50个碱基对的内含子深层引物产生的扩增子通过下一代测序分析进行测序。

结果

在病例组中未检测到开放获取数据库(ClinVar、HGMD等)中报道的致病或可能致病的变异。在ASD组和健康对照组中,确定了rs113396244、rs11204811、rs779479223、rs772352054、rs3831142、rs112072925、rs227453和rs142860188变异。rs3831142、rs112072925、rs2274535、rs142860188变异在ASD组中具有统计学意义。根据性别对检测到单核苷酸多态性(SNP)的病例分布无统计学意义。

结论

在患者组中被确定具有统计学意义的变异位于包含该蛋白的HP1-ZNF和DDE结构域的区域。鉴于DDE结构域,特别是在胎儿脑发育和神经发生中所起的关键作用,这四个变异在ASD背景下可能具有修饰和/或易患作用。