Jefri Malvin, Bell Scott, Peng Huashan, Hettige Nuwan, Maussion Gilles, Soubannier Vincent, Wu Hanrong, Silveira Heika, Theroux Jean-Francois, Moquin Luc, Zhang Xin, Aouabed Zahia, Krishnan Jeyashree, O'Leary Liam A, Antonyan Lilit, Zhang Ying, McCarty Vincent, Mechawar Naguib, Gratton Alain, Schuppert Andreas, Durcan Thomas M, Fon Edward A, Ernst Carl
Psychiatric Genetics Group, McGill University, Montreal, Quebec, Canada.
Department of Psychiatry, McGill University and Douglas Hospital Research Institute, Montreal, Quebec, Canada.
Stem Cells Transl Med. 2020 Jun;9(6):697-712. doi: 10.1002/sctm.18-0180. Epub 2020 Mar 10.
Making high-quality dopamine (DA)-producing cells for basic biological or small molecule screening studies is critical for the development of novel therapeutics for disorders of the ventral midbrain. Currently, many ventral midbrain assays have low signal-to-noise ratio due to low levels of cellular DA and the rate-limiting enzyme of DA synthesis, tyrosine hydroxylase (TH), hampering discovery efforts. Using intensively characterized ventral midbrain cells derived from human skin, which demonstrate calcium pacemaking activity and classical electrophysiological properties, we show that an L-type calcium agonist can significantly increase TH protein levels and DA content and release. Live calcium imaging suggests that it is the immediate influx of calcium occurring simultaneously in all cells that drives this effect. Genome-wide expression profiling suggests that L-type calcium channel stimulation has a significant effect on specific genes related to DA synthesis and affects expression of L-type calcium receptor subunits from the CACNA1 and CACNA2D families. Together, our findings provide an advance in the ability to increase DA and TH levels to improve the accuracy of disease modeling and small molecule screening for disorders of the ventral midbrain, including Parkinson's disease.
制备用于基础生物学或小分子筛选研究的高质量多巴胺(DA)生成细胞,对于开发治疗中脑腹侧疾病的新型疗法至关重要。目前,由于细胞DA水平低以及DA合成的限速酶酪氨酸羟化酶(TH)水平低,许多中脑腹侧检测的信噪比很低,这阻碍了研究进展。我们使用来自人类皮肤的经过深入表征的中脑腹侧细胞,这些细胞表现出钙自发放电活动和经典电生理特性,结果表明L型钙激动剂可显著提高TH蛋白水平以及DA含量和释放。实时钙成像表明,正是所有细胞中同时发生的钙的即时内流驱动了这种效应。全基因组表达谱分析表明,L型钙通道刺激对与DA合成相关的特定基因有显著影响,并影响来自CACNA1和CACNA2D家族的L型钙受体亚基的表达。总之,我们的研究结果在提高DA和TH水平以改善疾病建模准确性以及针对包括帕金森病在内的中脑腹侧疾病进行小分子筛选的能力方面取得了进展。