Dobner, J.; Simons, I.M.; Rufinatscha, K.; Hänsch, S.; Schwarten, M.; Weiergräber, O.H.; Abdollahzadeh, I.; Gensch, T.; Bode, J.G.; Hoffmann, S.;
et al. Deficiency of GABARAP but Not Its Paralogs Causes Enhanced EGF-Induced EGFR Degradation. Cells 2020, 9, 1296.
https://doi.org/10.3390/cells9051296
AMA Style
Dobner J, Simons IM, Rufinatscha K, Hänsch S, Schwarten M, Weiergräber OH, Abdollahzadeh I, Gensch T, Bode JG, Hoffmann S,
et al. Deficiency of GABARAP but Not Its Paralogs Causes Enhanced EGF-Induced EGFR Degradation. Cells. 2020; 9(5):1296.
https://doi.org/10.3390/cells9051296
Chicago/Turabian Style
Dobner, Jochen, Indra M. Simons, Kerstin Rufinatscha, Sebastian Hänsch, Melanie Schwarten, Oliver H. Weiergräber, Iman Abdollahzadeh, Thomas Gensch, Johannes G. Bode, Silke Hoffmann,
and et al. 2020. "Deficiency of GABARAP but Not Its Paralogs Causes Enhanced EGF-Induced EGFR Degradation" Cells 9, no. 5: 1296.
https://doi.org/10.3390/cells9051296
APA Style
Dobner, J., Simons, I. M., Rufinatscha, K., Hänsch, S., Schwarten, M., Weiergräber, O. H., Abdollahzadeh, I., Gensch, T., Bode, J. G., Hoffmann, S., & Willbold, D.
(2020). Deficiency of GABARAP but Not Its Paralogs Causes Enhanced EGF-Induced EGFR Degradation. Cells, 9(5), 1296.
https://doi.org/10.3390/cells9051296