Seale, L.A.; Khadka, V.S.; Menor, M.; Xie, G.; Watanabe, L.M.; Sasuclark, A.; Guirguis, K.; Ha, H.Y.; Hashimoto, A.C.; Peplowska, K.;
et al. Combined Omics Reveals That Disruption of the Selenocysteine Lyase Gene Affects Amino Acid Pathways in Mice. Nutrients 2019, 11, 2584.
https://doi.org/10.3390/nu11112584
AMA Style
Seale LA, Khadka VS, Menor M, Xie G, Watanabe LM, Sasuclark A, Guirguis K, Ha HY, Hashimoto AC, Peplowska K,
et al. Combined Omics Reveals That Disruption of the Selenocysteine Lyase Gene Affects Amino Acid Pathways in Mice. Nutrients. 2019; 11(11):2584.
https://doi.org/10.3390/nu11112584
Chicago/Turabian Style
Seale, Lucia A., Vedbar S. Khadka, Mark Menor, Guoxiang Xie, Ligia M. Watanabe, Alexandru Sasuclark, Kyrillos Guirguis, Herena Y. Ha, Ann C. Hashimoto, Karolina Peplowska,
and et al. 2019. "Combined Omics Reveals That Disruption of the Selenocysteine Lyase Gene Affects Amino Acid Pathways in Mice" Nutrients 11, no. 11: 2584.
https://doi.org/10.3390/nu11112584
APA Style
Seale, L. A., Khadka, V. S., Menor, M., Xie, G., Watanabe, L. M., Sasuclark, A., Guirguis, K., Ha, H. Y., Hashimoto, A. C., Peplowska, K., Tiirikainen, M., Jia, W., Berry, M. J., & Deng, Y.
(2019). Combined Omics Reveals That Disruption of the Selenocysteine Lyase Gene Affects Amino Acid Pathways in Mice. Nutrients, 11(11), 2584.
https://doi.org/10.3390/nu11112584