Lang Bing, Zhang Lei, Jiang Guanyu, Hu Ling, Lan Wei, Zhao Lei, Hunter Irene, Pruski Michal, Song Ning-Ning, Huang Ying, Zhang Ling, St Clair David, McCaig Colin D, Ding Yu-Qiang
Key Laboratory of Arrhythmias, Ministry of Education of China, East Hospital, and Department of Anatomy and Neurobiology, Collaborative Innovation Centre for Brain Science, Tongji University School of Medicine, Shanghai 200092, China.
School of Medicine, Medical Sciences and Nutrition, University of Aberdeen, Foresterhill, AB25 2ZD, Aberdeen, Scotland, United Kingdom.
Sci Rep. 2016 Sep 27;6:31126. doi: 10.1038/srep31126.
Schizophrenia is a debilitating familial neuropsychiatric disorder which affects 1% of people worldwide. Although the heritability for schizophrenia approaches 80% only a small proportion of the overall genetic risk has been accounted for, and to date only a limited number of genetic loci have been definitively implicated. We have identified recently through genetic and in vitro functional studies, a novel serine/threonine kinase gene, unc-51-like kinase 4 (ULK4), as a rare risk factor for major mental disorders including schizophrenia. Now using the approach of in utero gene transfer we have discovered that Ulk4 plays a key modulatory role in corticogenesis. Knockdown of Ulk4 leads to significantly decreased cell proliferation in germinal zones and profound deficits in radial migration and neurite ramification. These abnormalities can be reversed successfully by Ulk4 gene supplementation. Ulk4 also regulated acetylation of α-tubulin, an important post-translational modification of microtubules. We conclude that Ulk4 plays an essential role in normal brain development and when defective, the risk of neurodevelopmental disorders such as schizophrenia is increased.
精神分裂症是一种使人衰弱的家族性神经精神障碍,全球有1%的人受其影响。尽管精神分裂症的遗传度接近80%,但在总体遗传风险中,只有一小部分得到了解释,而且迄今为止,只有有限数量的基因位点被明确证实与之相关。我们最近通过基因和体外功能研究,确定了一种新的丝氨酸/苏氨酸激酶基因,即unc-51样激酶4(ULK4),它是包括精神分裂症在内的主要精神障碍的一种罕见风险因素。现在,我们采用子宫内基因转移的方法发现,Ulk4在皮质发生过程中起关键的调节作用。敲低Ulk4会导致生发区细胞增殖显著减少,以及放射状迁移和神经突分支出现严重缺陷。补充Ulk4基因可以成功逆转这些异常情况。Ulk4还调节α-微管蛋白的乙酰化,这是微管的一种重要的翻译后修饰。我们得出结论,Ulk4在正常大脑发育中起重要作用,当它出现缺陷时,会增加患精神分裂症等神经发育障碍的风险。