The Sagol School of Neuroscience, Tel Aviv University, Tel Aviv, Israel.
The School of Psychological Sciences, Faculty of Social Sciences, Tel Aviv University, Tel Aviv, Israel.
Commun Biol. 2023 Dec 14;6(1):1269. doi: 10.1038/s42003-023-05612-5.
Gtf2i encodes the general transcription factor II-I (TFII-I), with peak expression during pre-natal and early post-natal brain development stages. Because these stages are critical for proper brain development, we studied at the single-cell level the consequences of Gtf2i's deletion from excitatory neurons, specifically on mitochondria. Here we show that Gtf2i's deletion resulted in abnormal morphology, disrupted mRNA related to mitochondrial fission and fusion, and altered autophagy/mitophagy protein expression. These changes align with elevated reactive oxygen species levels, illuminating Gtf2i's importance in neurons mitochondrial function. Similar mitochondrial issues were demonstrated by Gtf2i heterozygous model, mirroring the human condition in Williams syndrome (WS), and by hemizygous neuronal Gtf2i deletion model, indicating Gtf2i's dosage-sensitive role in mitochondrial regulation. Clinically relevant, we observed altered transcript levels related to mitochondria, hypoxia, and autophagy in frontal cortex tissue from WS individuals. Our study reveals mitochondrial and autophagy-related deficits shedding light on WS and other Gtf2i-related disorders.
Gtf2i 编码通用转录因子 II-I(TFII-I),在产前和产后早期大脑发育阶段表达峰值最高。由于这些阶段对大脑发育至关重要,我们在单细胞水平上研究了兴奋性神经元中 Gtf2i 缺失的后果,特别是对线粒体的影响。研究结果表明,Gtf2i 的缺失导致线粒体形态异常,与线粒体分裂和融合相关的 mRNA 受到干扰,自噬/线粒体自噬蛋白表达改变。这些变化与活性氧水平升高一致,表明 Gtf2i 在神经元线粒体功能中的重要性。Gtf2i 杂合子模型和半合子神经元 Gtf2i 缺失模型均显示出类似的线粒体问题,反映了威廉姆斯综合征(WS)患者的人类状况,表明 Gtf2i 在调节线粒体方面存在剂量敏感性作用。具有临床意义的是,我们在 WS 个体的额皮质组织中观察到与线粒体、缺氧和自噬相关的转录本水平改变。我们的研究揭示了与线粒体和自噬相关的缺陷,为 WS 和其他 Gtf2i 相关疾病的研究提供了新视角。