Zhou, W.; Bias, K.; Lenczewski-Jowers, D.; Henderson, J.; Cupp, V.; Ananga, A.; Ochieng, J.W.; Tsolova, V.
Analysis of Protein Sequence Identity, Binding Sites, and 3D Structures Identifies Eight Pollen Species and Ten Fruit Species with High Risk of Cross-Reactive Allergies. Genes 2022, 13, 1464.
https://doi.org/10.3390/genes13081464
AMA Style
Zhou W, Bias K, Lenczewski-Jowers D, Henderson J, Cupp V, Ananga A, Ochieng JW, Tsolova V.
Analysis of Protein Sequence Identity, Binding Sites, and 3D Structures Identifies Eight Pollen Species and Ten Fruit Species with High Risk of Cross-Reactive Allergies. Genes. 2022; 13(8):1464.
https://doi.org/10.3390/genes13081464
Chicago/Turabian Style
Zhou, Wei, Kaylah Bias, Dylan Lenczewski-Jowers, Jiliah Henderson, Victor Cupp, Anthony Ananga, Joel Winyo Ochieng, and Violeta Tsolova.
2022. "Analysis of Protein Sequence Identity, Binding Sites, and 3D Structures Identifies Eight Pollen Species and Ten Fruit Species with High Risk of Cross-Reactive Allergies" Genes 13, no. 8: 1464.
https://doi.org/10.3390/genes13081464
APA Style
Zhou, W., Bias, K., Lenczewski-Jowers, D., Henderson, J., Cupp, V., Ananga, A., Ochieng, J. W., & Tsolova, V.
(2022). Analysis of Protein Sequence Identity, Binding Sites, and 3D Structures Identifies Eight Pollen Species and Ten Fruit Species with High Risk of Cross-Reactive Allergies. Genes, 13(8), 1464.
https://doi.org/10.3390/genes13081464