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Tauopathy in the young autistic brain: novel biomarker and therapeutic target

机译:年轻自闭症脑的拇趾病:新型生物标志物和治疗目标

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Given our recent discovery of somatic mutations in autism spectrum disorder (ASD)/intellectual disability (ID) genes in postmortem aged Alzheimer’s disease brains correlating with increasing tauopathy, it is important to decipher if tauopathy is underlying brain imaging results of atrophy in ASD/ID children. We concentrated on activity-dependent neuroprotective protein (ADNP), a prevalent autism gene. The unique availability of multiple postmortem brain sections of a 7-year-old male, heterozygous for ADNP de novo mutation c.2244Adup/p.His559Glnfs*3 allowed exploration of tauopathy, reflecting on a general unexplored mechanism. The tested subject exhibited autism, fine motor delays, severe intellectual disability and seizures. The patient died after multiple organ failure following liver transplantation. To compare to other ADNP syndrome mutations, immortalized lymphoblastoid cell lines from three different patients (including ADNP p.Arg216*, p.Lys408Valfs*31, and p.Tyr719* heterozygous dominant mutations) and a control were subjected to RNA-seq. Immunohistochemistry, high-throughput gene expression profiles in numerous postmortem tissues followed. Comparisons to a control brain and to extensive datasets were used. Live cell imaging investigated Tau-microtubule interaction, protecting against tauopathy. Extensive child brain tauopathy paralleled by multiple gene expression changes was discovered. Tauopathy was explained by direct mutation effects on Tau-microtubule interaction and correction by the ADNP active snippet NAP. Significant pathway changes (empirical P value 50% of the tested genes), including NLGN1, NLGN2, PAX6, SMARCA4, and SNAP25, converging on nervous system development and tauopathy. NAP provided protection against mutated ADNP disrupted Tau-microtubule association. In conclusion, tauopathy may explain brain-imaging findings in ADNP syndrome children and may provide a new direction for the development of tauopathy protecting drug candidates like NAP in ASD/ID.
机译:鉴于我们最近发现的自闭症谱系疾病(ASD)/智障残疾(ID)基因的体细胞突变(ASD)/智力疾病的疾病大脑与增加的TauoPathy相关相关性,如果拇趾病是托管疗法在ASD / ID中萎缩的脑成像结果潜在的脑成像结果是重要的孩子们。我们专注于活性依赖性神经保护蛋白(ADNP),普遍的自闭症基因。多个雄性血小脑部的独特可用性,7岁的男性,杂合的ADNP de Novo突变C.2244ADUP / P.HIS559GLNFS * 3允许探索跨部门病,反映一般未探究机制。测试主体表现出自闭症,精细电机延误,严重的智力残疾和癫痫发作。患者在肝移植后多器官失效后死亡。为了与其他ADNP综合征突变进行比较,来自三种不同患者的永生化淋巴细胞细胞系(包括ADNP P.ARG216 *,P.LYS408VALF * 31和P.TYR719 *杂合子的优势突变)和对照进行RNA-SEQ。免疫组织化学,高通量基因表达曲线在众多后蛋白组织中。使用对控制大脑和广泛数据集的比较。活细胞成像研究了TAU - 微管相互作用,保护胁迫。发现了由多种基因表达变化平行的广泛儿童脑部位。通过直接突变对TAU微管相互作用和ADNP活性片段午睡的校正来解释Tauoxathy。显着的途径变化(经验P值50%的测试基因),包括NLGN1,NLGN2,PAX6,SMARCA4和SNAP25,会聚在神经系统的发育和部落病。午睡提供了防止突变的ADNP中断的Tau-MicroTubule协会。总之,Tauoxathy可以在ADNP综合征儿童中解释脑成像结果,并可为在ASD / ID中脱午点等延长液保护药物的候选药物的新方向。

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