Crucial role of nicotinic α5 subunit variants for Ca2+ fluxes in ventral midbrain neurons
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α-Conotoxins Identify the α3β4* Subtype as the Predominant Nicotinic Acetylcholine Receptor Expressed in Human Adrenal Chromaffin Cells.Nicotine Induces Podocyte Apoptosis through Increasing Oxidative Stress.Increased nicotine response in iPSC-derived human neurons carrying the CHRNA5 N398 allele.The Distribution of Charged Amino Acid Residues and the Ca2+ Permeability of Nicotinic Acetylcholine Receptors: A Predictive Model.Genetics of addictive behavior: the example of nicotine dependence.α5 nAChR modulation of the prefrontal cortex makes attention resilient.Nicotine reverses hypofrontality in animal models of addiction and schizophrenia.Identification of expression quantitative trait loci associated with schizophrenia and affective disorders in normal brain tissue
P2860
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P2860
Crucial role of nicotinic α5 subunit variants for Ca2+ fluxes in ventral midbrain neurons
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name
Crucial role of nicotinic α5 subunit variants for Ca2+ fluxes in ventral midbrain neurons
@ast
Crucial role of nicotinic α5 subunit variants for Ca2+ fluxes in ventral midbrain neurons
@en
type
label
Crucial role of nicotinic α5 subunit variants for Ca2+ fluxes in ventral midbrain neurons
@ast
Crucial role of nicotinic α5 subunit variants for Ca2+ fluxes in ventral midbrain neurons
@en
prefLabel
Crucial role of nicotinic α5 subunit variants for Ca2+ fluxes in ventral midbrain neurons
@ast
Crucial role of nicotinic α5 subunit variants for Ca2+ fluxes in ventral midbrain neurons
@en
P2093
P2860
P50
P356
P1433
P1476
Crucial role of nicotinic α5 subunit variants for Ca2+ fluxes in ventral midbrain neurons
@en
P2093
Claudia Moriconi
Jerry A Stitzel
Miriam Sciaccaluga
Uwe Maskos
P2860
P304
P356
10.1096/FJ.14-268102
P407
P577
2015-04-24T00:00:00Z