M. Nasim Et Al. , "Eukaryotic selenocysteine incorporation follows a nonprocessive mechanism that competes with translational termination," JOURNAL OF BIOLOGICAL CHEMISTRY , vol.275, no.20, pp.14846-14852, 2000
Nasim, M. Et Al. 2000. Eukaryotic selenocysteine incorporation follows a nonprocessive mechanism that competes with translational termination. JOURNAL OF BIOLOGICAL CHEMISTRY , vol.275, no.20 , 14846-14852.
Nasim, M., Jaenecke, S., Belduz, A. O., Kollmus, H., Flohe, L., & McCarthy, J., (2000). Eukaryotic selenocysteine incorporation follows a nonprocessive mechanism that competes with translational termination. JOURNAL OF BIOLOGICAL CHEMISTRY , vol.275, no.20, 14846-14852.
Nasim, MT Et Al. "Eukaryotic selenocysteine incorporation follows a nonprocessive mechanism that competes with translational termination," JOURNAL OF BIOLOGICAL CHEMISTRY , vol.275, no.20, 14846-14852, 2000
Nasim, MT Et Al. "Eukaryotic selenocysteine incorporation follows a nonprocessive mechanism that competes with translational termination." JOURNAL OF BIOLOGICAL CHEMISTRY , vol.275, no.20, pp.14846-14852, 2000
Nasim, M. Et Al. (2000) . "Eukaryotic selenocysteine incorporation follows a nonprocessive mechanism that competes with translational termination." JOURNAL OF BIOLOGICAL CHEMISTRY , vol.275, no.20, pp.14846-14852.
@article{article, author={MT Nasim Et Al. }, title={Eukaryotic selenocysteine incorporation follows a nonprocessive mechanism that competes with translational termination}, journal={JOURNAL OF BIOLOGICAL CHEMISTRY}, year=2000, pages={14846-14852} }