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A novel rare variant R292H in RTN4R affects growth cone formation and possibly contributes to schizophrenia susceptibility

机译:RTN4R中的新型罕见变体R292H影响生长锥的形成,并可能有助于精神分裂症的易感性

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Reticulon 4 receptor (RTN4R) plays an essential role in regulating axonal regeneration and plasticity in the central nervous system through the activation of rho kinase, and is located within chromosome 22q11.2, a region that is known to be a hotspot for schizophrenia (SCZ) and autism spectrum disorder (ASD). Recently, rare variants such as copy-number variants and single-nucleotide variants have been a focus of research because of their large effect size associated with increased susceptibility to SCZ and ASD and the possibility of elucidating the pathophysiology of mental disorder through functional analysis of the discovered rare variants. To discover rare variants with large effect size and to evaluate their role in the etiopathophysiology of SCZ and ASD, we sequenced the RTN4R coding exons with a sample comprising 370 SCZ and 192 ASD patients, and association analysis using a large number of unrelated individuals (1716 SCZ, 382 ASD and 4009 controls). Through this mutation screening, we discovered four rare (minor allele frequency RTN4R . Among these discovered rare mutations, R292H was found to be significantly associated with SCZ ( P =0.048). Furthermore, in vitro functional assays showed that the R292H mutation affected the formation of growth cones. This study strengthens the evidence for association between rare variants within RTN4R and SCZ, and may shed light on the molecular mechanisms underlying the neurodevelopmental disorder.
机译:Reticulon 4受体(RTN4R)通过激活rho激酶在调节中枢神经系统的轴突再生和可塑性中起重要作用,位于染色体22q11.2内,该区域是精神分裂症(SCZ)的热点)和自闭症谱系障碍(ASD)。近来,诸如拷贝数变体和单核苷酸变体之类的稀有变体已成为研究的焦点,因为它们的作用范围大,与对SCZ和ASD的敏感性增加有关,并且有可能通过对精神分裂症的功能分析来阐明精神障碍的病理生理学。发现稀有变种。为了发现具有较大影响大小的罕见变体并评估其在SCZ和ASD的病因生理中的作用,我们对RTN4R编码外显子进行了测序,该样本包含370名SCZ和192名ASD患者,并使用大量无关个体进行关联分析(1716 SCZ,382 ASD和4009控件)。通过这种突变筛选,我们发现了四个稀有(次等位基因频率RTN4R)。在这些稀有突变中,发现R292H与SCZ显着相关(P = 0.048),此外,体外功能实验表明R292H突变影响了其形成。这项研究加强了RTN4R和SCZ内罕见变体之间关联的证据,并可能阐明了神经发育障碍的分子机制。

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