导致局灶性癫痫脑功能障碍的体细胞嵌合阈值。

IF 10.6 1区 医学 Q1 CLINICAL NEUROLOGY Brain Pub Date : 2024-09-03 DOI:10.1093/brain/awae190
Jintae Kim, Sang Min Park, Hyun Yong Koh, Ara Ko, Hoon-Chul Kang, Won Seok Chang, Dong Seok Kim, Jeong Ho Lee
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引用次数: 0

摘要

部分脑细胞的体细胞嵌合会导致神经发育障碍,包括儿童难治性癫痫。然而,体细胞镶嵌导致大脑功能障碍的阈值尚不清楚。在这项研究中,我们在局灶性皮质发育不良 II 型(FCD II)小鼠中诱导了不同的镶嵌负担,其特点是 mTOR 体细胞镶嵌和自发性行为癫痫发作。在躯体感觉皮层(SSC)或内侧前额叶皮层(PFC)中,表达mTOR突变体的马赛克神经元数量从大约1,000个到40,000个不等。令人惊讶的是,大约8000到9000个表达MTOR突变体的神经元(推断为占小鼠半皮层细胞总数的0.08-0.09%或大约0.04%的变异等位基因频率(VAF))就足以引发癫痫发作。突变负荷与癫痫发作频率和发病率相关,在超过阈值的FCD II小鼠中,发作间期尖峰电图以及β和γ频率振荡的趋势更高。此外,对突变阴性的 FCD II 患者的大块脑组织进行深度测序,发现通过超深度靶向测序(多达 2000 万读数),切除的脑组织中 mTOR 通路基因的体细胞镶嵌率低至 0.07%。因此,我们的研究表明,极低水平的体细胞嵌合可导致大脑功能障碍。
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Threshold of somatic mosaicism leading to brain dysfunction with focal epilepsy.

Somatic mosaicism in a fraction of brain cells causes neurodevelopmental disorders, including childhood intractable epilepsy. However, the threshold for somatic mosaicism leading to brain dysfunction is unknown. In this study, we induced various mosaic burdens in focal cortical dysplasia type II (FCD II) mice, featuring mTOR somatic mosaicism and spontaneous behavioural seizures. The mosaic burdens ranged from approximately 1000 to 40 000 neurons expressing the mTOR mutant in the somatosensory or medial prefrontal cortex. Surprisingly, approximately 8000-9000 neurons expressing the MTOR mutant, extrapolated to constitute 0.08%-0.09% of total cells or roughly 0.04% of variant allele frequency in the mouse hemicortex, were sufficient to trigger epileptic seizures. The mutational burden was correlated with seizure frequency and onset, with a higher tendency for electrographic inter-ictal spikes and beta- and gamma-frequency oscillations in FCD II mice exceeding the threshold. Moreover, mutation-negative FCD II patients in deep sequencing of their bulky brain tissues revealed somatic mosaicism of the mTOR pathway genes as low as 0.07% in resected brain tissues through ultra-deep targeted sequencing (up to 20 million reads). Thus, our study suggests that extremely low levels of somatic mosaicism can contribute to brain dysfunction.

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来源期刊
Brain
Brain 医学-临床神经学
CiteScore
20.30
自引率
4.10%
发文量
458
审稿时长
3-6 weeks
期刊介绍: Brain, a journal focused on clinical neurology and translational neuroscience, has been publishing landmark papers since 1878. The journal aims to expand its scope by including studies that shed light on disease mechanisms and conducting innovative clinical trials for brain disorders. With a wide range of topics covered, the Editorial Board represents the international readership and diverse coverage of the journal. Accepted articles are promptly posted online, typically within a few weeks of acceptance. As of 2022, Brain holds an impressive impact factor of 14.5, according to the Journal Citation Reports.
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