Zexuan Li, Xinzhe Du, Xijin Wang, Jianzhen Hu, Meiqi Liu, Yao Gao, Zhifen Liu, Xiaohua Cao, Xinrong Li, Yong Xu, Sha Liu
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This study focused on early-onset schizophrenia (EOS), aiming to identify the multi-molecular axis consisting of circRNAs, miRNAs, and mRNAs with both neurobiological function and diagnostic value to assist in disease identification. In the discovery cohort of 10 drug-naïve, first-episode patients with EOS and 10 matched healthy controls (HCs), differentially expressed (DE) circRNAs and miRNAs were identified via Illumina high-throughput sequencing. In the validation cohort-1 (40 EOS v.s. 50 HCs), the candidate circRNAs and miRNAs were further screened using Real-time polymerase chain reaction, Sanger sequencing, and RNase R assay. Combining dual-luciferase reporter assay with overexpression/knockdown experiments, the axis consisting of circRNAs-miRNAs-mRNAs with binding and regulatory relationships has been established. Subsequently, the functions of genes on the axis were explored through zebrafish embryo manipulation and neural differentiation. The clinical value of the entire axis was assessed in the validation cohort-2 (84 EOS v.s. 67 HCs). Patients with EOS exhibited expression profiles of 487 DE circRNAs and 101 DE miRNAs compared to HCs. The binding relationships and regulatory effects of hsa-circ-CORO1C on hsa-miR-708-3p, hsa-miR-708-3p on target JARID2 and LNPEP were elucidated. Among them, hsa-miR-708-3p caused aberrant phenotypes including significant craniocerebral malformation and impaired neuron axon growth. JARID2 and LNPEP could facilitate neuronal differentiation and augment synaptic formation. In addition to their neurobiological functions, the combined diagnostic efficacy of the whole axis, where hsa-circ-CORO1C could serve as a sponge for hsa-miR-708-3p to alleviate its suppressive effects on JARID2 and LNPEP, surpassed any individual gene we found in EOS. Our study demonstrated a multi-molecular axis, hsa-circ-CORO1C-hsa-miR-708-3p-JARID2 + LNPEP, in EOS for the first time. By integrating evidence from genetic, neurophenotypic, and clinical perspectives, we have expanded the comprehension of the pathological mechanism and provided the reference for identifying reliable objective diagnostic biomarkers for EOS.</p>","PeriodicalId":74758,"journal":{"name":"Schizophrenia (Heidelberg, Germany)","volume":"10 1","pages":"119"},"PeriodicalIF":3.0000,"publicationDate":"2024-12-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11659586/pdf/","citationCount":"0","resultStr":"{\"title\":\"The neurodevelopmental regulatory role and clinical value of hsa-circ-CORO1C-hsa-miR-708-3p-JARID2 + LNPEP axis in early-onset schizophrenia.\",\"authors\":\"Zexuan Li, Xinzhe Du, Xijin Wang, Jianzhen Hu, Meiqi Liu, Yao Gao, Zhifen Liu, Xiaohua Cao, Xinrong Li, Yong Xu, Sha Liu\",\"doi\":\"10.1038/s41537-024-00538-1\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Genes discovered by previous epigenetic studies of schizophrenia have focused solely on diagnostics or pathology, potentially leading to a disconnection between them. Using these molecules to identify the disease is considered insufficient. MicroRNAs (miRNAs) binding to messenger RNAs (mRNAs) can lead to mRNA degradation, while circular RNAs (circRNAs), by binding to miRNAs as sponge, can reduce the inhibitory effect of miRNAs on mRNAs. CircRNAs, miRNAs, and mRNAs form the multi-molecular axis that can bind and regulate expression between each other, thereby affecting biological function. This study focused on early-onset schizophrenia (EOS), aiming to identify the multi-molecular axis consisting of circRNAs, miRNAs, and mRNAs with both neurobiological function and diagnostic value to assist in disease identification. In the discovery cohort of 10 drug-naïve, first-episode patients with EOS and 10 matched healthy controls (HCs), differentially expressed (DE) circRNAs and miRNAs were identified via Illumina high-throughput sequencing. In the validation cohort-1 (40 EOS v.s. 50 HCs), the candidate circRNAs and miRNAs were further screened using Real-time polymerase chain reaction, Sanger sequencing, and RNase R assay. Combining dual-luciferase reporter assay with overexpression/knockdown experiments, the axis consisting of circRNAs-miRNAs-mRNAs with binding and regulatory relationships has been established. Subsequently, the functions of genes on the axis were explored through zebrafish embryo manipulation and neural differentiation. The clinical value of the entire axis was assessed in the validation cohort-2 (84 EOS v.s. 67 HCs). Patients with EOS exhibited expression profiles of 487 DE circRNAs and 101 DE miRNAs compared to HCs. The binding relationships and regulatory effects of hsa-circ-CORO1C on hsa-miR-708-3p, hsa-miR-708-3p on target JARID2 and LNPEP were elucidated. Among them, hsa-miR-708-3p caused aberrant phenotypes including significant craniocerebral malformation and impaired neuron axon growth. 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引用次数: 0
摘要
先前对精神分裂症的表观遗传学研究发现的基因仅仅集中在诊断或病理上,这可能导致两者之间的脱节。使用这些分子来识别疾病被认为是不够的。MicroRNAs (miRNAs)与信使rna (mRNA)结合可导致mRNA降解,而环状rna (circRNAs)以海绵的形式与miRNAs结合,可降低miRNAs对mRNA的抑制作用。CircRNAs、miRNAs和mrna组成多分子轴,可以相互结合并调节表达,从而影响生物学功能。本研究以早发性精神分裂症(EOS)为研究对象,旨在鉴定具有神经生物学功能和诊断价值的由circRNAs、miRNAs和mrna组成的多分子轴,以协助疾病鉴定。在10个drug-naïve发现队列中,首发EOS患者和10个匹配的健康对照(hc),通过Illumina高通量测序鉴定了差异表达(DE) circrna和mirna。在验证队列-1(40个EOS vs . 50个hc)中,候选环状rna和mirna通过实时聚合酶链反应、Sanger测序和RNase R检测进一步筛选。结合双荧光素酶报告基因实验和过表达/敲低实验,建立了具有结合和调控关系的circrnas - mirnas - mrna组成的轴。随后,通过斑马鱼胚胎操作和神经分化探索轴上基因的功能。在验证队列2中评估了整个轴的临床价值(84例EOS vs . 67例hc)。与hc相比,EOS患者表现出487个DE circrna和101个DE mirna的表达谱。阐明了hsa-circ-CORO1C对hsa-miR-708-3p、hsa-miR-708-3p对靶标JARID2和LNPEP的结合关系和调控作用。其中,hsa-miR-708-3p引起异常表型,包括明显的颅脑畸形和神经元轴突生长受损。JARID2和LNPEP能促进神经元分化,增强突触形成。除了它们的神经生物学功能外,hsa-circ-CORO1C可以作为hsa-miR-708-3p的海绵,以减轻其对JARID2和LNPEP的抑制作用,整个轴的综合诊断效果超过了我们在EOS中发现的任何单个基因。我们的研究首次在EOS中证明了一个多分子轴,hsa-circ-CORO1C-hsa-miR-708-3p-JARID2 + LNPEP。通过整合遗传学、神经表型和临床方面的证据,我们扩大了对EOS病理机制的理解,并为确定可靠的客观诊断生物标志物提供了参考。
The neurodevelopmental regulatory role and clinical value of hsa-circ-CORO1C-hsa-miR-708-3p-JARID2 + LNPEP axis in early-onset schizophrenia.
Genes discovered by previous epigenetic studies of schizophrenia have focused solely on diagnostics or pathology, potentially leading to a disconnection between them. Using these molecules to identify the disease is considered insufficient. MicroRNAs (miRNAs) binding to messenger RNAs (mRNAs) can lead to mRNA degradation, while circular RNAs (circRNAs), by binding to miRNAs as sponge, can reduce the inhibitory effect of miRNAs on mRNAs. CircRNAs, miRNAs, and mRNAs form the multi-molecular axis that can bind and regulate expression between each other, thereby affecting biological function. This study focused on early-onset schizophrenia (EOS), aiming to identify the multi-molecular axis consisting of circRNAs, miRNAs, and mRNAs with both neurobiological function and diagnostic value to assist in disease identification. In the discovery cohort of 10 drug-naïve, first-episode patients with EOS and 10 matched healthy controls (HCs), differentially expressed (DE) circRNAs and miRNAs were identified via Illumina high-throughput sequencing. In the validation cohort-1 (40 EOS v.s. 50 HCs), the candidate circRNAs and miRNAs were further screened using Real-time polymerase chain reaction, Sanger sequencing, and RNase R assay. Combining dual-luciferase reporter assay with overexpression/knockdown experiments, the axis consisting of circRNAs-miRNAs-mRNAs with binding and regulatory relationships has been established. Subsequently, the functions of genes on the axis were explored through zebrafish embryo manipulation and neural differentiation. The clinical value of the entire axis was assessed in the validation cohort-2 (84 EOS v.s. 67 HCs). Patients with EOS exhibited expression profiles of 487 DE circRNAs and 101 DE miRNAs compared to HCs. The binding relationships and regulatory effects of hsa-circ-CORO1C on hsa-miR-708-3p, hsa-miR-708-3p on target JARID2 and LNPEP were elucidated. Among them, hsa-miR-708-3p caused aberrant phenotypes including significant craniocerebral malformation and impaired neuron axon growth. JARID2 and LNPEP could facilitate neuronal differentiation and augment synaptic formation. In addition to their neurobiological functions, the combined diagnostic efficacy of the whole axis, where hsa-circ-CORO1C could serve as a sponge for hsa-miR-708-3p to alleviate its suppressive effects on JARID2 and LNPEP, surpassed any individual gene we found in EOS. Our study demonstrated a multi-molecular axis, hsa-circ-CORO1C-hsa-miR-708-3p-JARID2 + LNPEP, in EOS for the first time. By integrating evidence from genetic, neurophenotypic, and clinical perspectives, we have expanded the comprehension of the pathological mechanism and provided the reference for identifying reliable objective diagnostic biomarkers for EOS.