Yan-Ai Mei

Affiliations: 
Fudan university, Shanghai, Shanghai Shi, China 
Area:
intracellular signaling pathways
Website:
http://life.fudan.edu.cn/professor/meiyanai.xml
Google:
"Yan-Ai Mei"
Mean distance: 16.25 (cluster 6)
 

Children

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Boxun Lu research assistant Fudan university
Xin Wang research assistant 2002-2003 Fudan university
Wenlei Ye research assistant 2007-2009
Miou Zhou grad student Fudan university
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Publications

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Li Z, Dong W, Zhang X, et al. (2021) Protein Kinase C Controls the Excitability of Cortical Pyramidal Neurons by Regulating Kv2.2 Channel Activity. Neuroscience Bulletin
Li Z, Wang C, Wang Z, et al. (2019) Allele-selective lowering of mutant HTT protein by HTT-LC3 linker compounds. Nature
Zhao QR, Lu JM, Li ZY, et al. (2018) Neuritin promotes neurite and spine growth in rat cerebellar granule cells via L-type calcium channel-mediated calcium influx. Journal of Neurochemistry
He YL, Wang K, Zhao QR, et al. (2018) Cyproheptadine Regulates Pyramidal Neuron Excitability in Mouse Medial Prefrontal Cortex. Neuroscience Bulletin
Lu JM, Liu DD, Li ZY, et al. (2017) Neuritin Enhances Synaptic Transmission in Medial Prefrontal Cortex in Mice by Increasing CaV3.3 Surface Expression. Cerebral Cortex (New York, N.Y. : 1991). 1-14
Yang T, Zhang HL, Liang Q, et al. (2016) Small-Conductance Ca2+-Activated Potassium Channels Negatively Regulate Aldosterone Secretion in Human Adrenocortical Cells. Hypertension
Liu DD, Lu JM, Zhao QR, et al. (2016) Growth differentiation factor-15 promotes glutamate release in medial prefrontal cortex of mice through upregulation of T-type calcium channels. Scientific Reports. 6: 28653
Yao JJ, Zhao QR, Liu DD, et al. (2016) Neuritin Upregulates Kv4.2 α-subunit of Potassium Channel Expression and Affects Neuronal Excitability by Regulating the Calcium-Calcineurin-NFATc4 Signaling Pathway. The Journal of Biological Chemistry
Liu R, Yang G, Zhou MH, et al. (2016) Flotillin-1 downregulates K(+) current by directly coupling with Kv2.1 subunit. Protein & Cell
Lu JM, Wang CY, Hu C, et al. (2016) GDF-15 enhances intracellular Ca2+ by increasing Cav1.3 expression in rat cerebellar granule neurons. The Biochemical Journal
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