Calì, T.; Ottolini, D.; Vicario, M.; Catoni, C.; Vallese, F.; Cieri, D.; Barazzuol, L.; Brini, M.
splitGFP Technology Reveals Dose-Dependent ER-Mitochondria Interface Modulation by α-Synuclein A53T and A30P Mutants. Cells 2019, 8, 1072.
https://doi.org/10.3390/cells8091072
AMA Style
Calì T, Ottolini D, Vicario M, Catoni C, Vallese F, Cieri D, Barazzuol L, Brini M.
splitGFP Technology Reveals Dose-Dependent ER-Mitochondria Interface Modulation by α-Synuclein A53T and A30P Mutants. Cells. 2019; 8(9):1072.
https://doi.org/10.3390/cells8091072
Chicago/Turabian Style
Calì, Tito, Denis Ottolini, Mattia Vicario, Cristina Catoni, Francesca Vallese, Domenico Cieri, Lucia Barazzuol, and Marisa Brini.
2019. "splitGFP Technology Reveals Dose-Dependent ER-Mitochondria Interface Modulation by α-Synuclein A53T and A30P Mutants" Cells 8, no. 9: 1072.
https://doi.org/10.3390/cells8091072
APA Style
Calì, T., Ottolini, D., Vicario, M., Catoni, C., Vallese, F., Cieri, D., Barazzuol, L., & Brini, M.
(2019). splitGFP Technology Reveals Dose-Dependent ER-Mitochondria Interface Modulation by α-Synuclein A53T and A30P Mutants. Cells, 8(9), 1072.
https://doi.org/10.3390/cells8091072