Coding mutations in

التفاصيل البيبلوغرافية
العنوان: Coding mutations in
المؤلفون: Ji-Feng, Guo, Lu, Zhang, Kai, Li, Jun-Pu, Mei, Jin, Xue, Jia, Chen, Xia, Tang, Lu, Shen, Hong, Jiang, Chao, Chen, Hui, Guo, Xue-Li, Wu, Si-Long, Sun, Qian, Xu, Qi-Ying, Sun, Piu, Chan, Hui-Fang, Shang, Tao, Wang, Guo-Hua, Zhao, Jing-Yu, Liu, Xue-Feng, Xie, Yi-Qi, Jiang, Zhen-Hua, Liu, Yu-Wen, Zhao, Zuo-Bin, Zhu, Jia-da, Li, Zheng-Mao, Hu, Xin-Xiang, Yan, Xiao-Dong, Fang, Guang-Hui, Wang, Feng-Yu, Zhang, Kun, Xia, Chun-Yu, Liu, Xiong-Wei, Zhu, Zhen-Yu, Yue, Shuai Cheng, Li, Huai-Bin, Cai, Zhuo-Hua, Zhang, Ran-Hui, Duan, Bei-Sha, Tang
المصدر: Proceedings of the National Academy of Sciences of the United States of America. 115(45)
سنة النشر: 2018
مصطلحات موضوعية: Adult, Male, Parents, Dopamine, Gene Expression, Apoptosis, Nerve Tissue Proteins, Receptors, Cell Surface, Cohort Studies, Animals, Drosophila Proteins, Humans, Gene Regulatory Networks, Age of Onset, RNA, Small Interfering, Base Sequence, Dopaminergic Neurons, Siblings, Aryl Hydrocarbon Receptor Nuclear Translocator, Brain, Parkinson Disease, Biological Sciences, Disease Models, Animal, Drosophila melanogaster, Early Diagnosis, Case-Control Studies, Mutation, Female
الوصف: Whole-exome sequencing has been successful in identifying genetic factors contributing to familial or sporadic Parkinson’s disease (PD). However, this approach has not been applied to explore the impact of de novo mutations on PD pathogenesis. Here, we sequenced the exomes of 39 early onset patients, their parents, and 20 unaffected siblings to investigate the effects of de novo mutations on PD. We identified 12 genes with de novo mutations (MAD1L1, NUP98, PPP2CB, PKMYT1, TRIM24, CEP131, CTTNBP2, NUS1, SMPD3, MGRN1, IFI35, and RUSC2), which could be functionally relevant to PD pathogenesis. Further analyses of two independent case-control cohorts (1,852 patients and 1,565 controls in one cohort and 3,237 patients and 2,858 controls in the other) revealed that NUS1 harbors significantly more rare nonsynonymous variants (P = 1.01E-5, odds ratio = 11.3) in PD patients than in controls. Functional studies in Drosophila demonstrated that the loss of NUS1 could reduce the climbing ability, dopamine level, and number of dopaminergic neurons in 30-day-old flies and could induce apoptosis in fly brain. Together, our data suggest that de novo mutations could contribute to early onset PD pathogenesis and identify NUS1 as a candidate gene for PD.
تدمد: 1091-6490
URL الوصول: https://explore.openaire.eu/search/publication?articleId=pmid________::e969a89899e65376fe235655e369bf08
https://pubmed.ncbi.nlm.nih.gov/30348779
حقوق: OPEN
رقم الأكسشن: edsair.pmid..........e969a89899e65376fe235655e369bf08
قاعدة البيانات: OpenAIRE