阵发性运动障碍
多巴胺能
纹状体
运动障碍
神经科学
基底神经节
多巴胺
生物
内科学
医学
帕金森病
中枢神经系统
疾病
作者
Daisuke Hatta,Kaito Kanamoto,Shiho Makiya,Kaori Watanabe,Tatsuya Kishino,Akira Kinoshita,Koh-ichiro Yoshiura,Naohiro Kurotaki,Keiro Shirotani,Nobuhisa Iwata
摘要
Abstract Mutations of proline-rich transmembrane protein 2 (PRRT2) lead to dyskinetic disorders such as paroxysmal kinesigenic dyskinesia (PKD), which is characterized by attacks of involuntary movements precipitated by suddenly initiated motion, and some convulsive disorders. Although previous studies have shown that PKD might be caused by cerebellar dysfunction, PRRT2 has not been sufficiently analyzed in some motor-related regions, including the basal ganglia, where dopaminergic neurons are most abundant in the brain. Here, we generated several types of Prrt2 knock-in (KI) mice harboring mutations, such as c.672dupG, that mimics the human pathological mutation c.649dupC and investigated the contribution of Prrt2 to dopaminergic regulation. Regardless of differences in the frameshift sites, all truncating mutations abolished Prrt2 expression within the striatum and cerebral cortex, consistent with previous reports of similar Prrt2 mutant rodents, confirming the loss-of-function nature of these mutations. Importantly, administration of l-dopa, a precursor of dopamine, exacerbated rotarod performance, especially in Prrt2-KI mice. These findings suggest that dopaminergic dysfunction in the brain by the PRRT2 mutation might be implicated in a part of motor symptoms of PKD and related disorders.
科研通智能强力驱动
Strongly Powered by AbleSci AI