Byun, H., Das, P., Yu, H., Aleman, A., Lozano, M. M., Matouschek, A., & Dudley, J. P. (2017). Mouse Mammary Tumor Virus Signal Peptide Uses a Novel p97-Dependent and Derlin-Independent Retrotranslocation Mechanism To Escape Proteasomal Degradation. American Society for Microbiology.
Cita Chicago Style (17a ed.)Byun, Hyewon, Poulami Das, Houqing Yu, Alejandro Aleman, Mary M. Lozano, Andreas Matouschek, y Jaquelin P. Dudley. Mouse Mammary Tumor Virus Signal Peptide Uses a Novel P97-Dependent and Derlin-Independent Retrotranslocation Mechanism To Escape Proteasomal Degradation. American Society for Microbiology, 2017.
Cita MLA (8a ed.)Byun, Hyewon, et al. Mouse Mammary Tumor Virus Signal Peptide Uses a Novel P97-Dependent and Derlin-Independent Retrotranslocation Mechanism To Escape Proteasomal Degradation. American Society for Microbiology, 2017.