User:Brynn Baker/Sandbox1
From Proteopedia
Homo sapiens Amylin3 Receptor, AMYR3
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References
- ↑ 1.0 1.1 Cao J, Belousoff MJ, Liang YL, Johnson RM, Josephs TM, Fletcher MM, Christopoulos A, Hay DL, Danev R, Wootten D, Sexton PM. A structural basis for amylin receptor phenotype. Science. 2022 Mar 25;375(6587):eabm9609. PMID:35324283 doi:10.1126/science.abm9609
- ↑ 2.0 2.1 Grizzanti J, Corrigan R, Casadesus G. Neuroprotective Effects of Amylin Analogues on Alzheimer's Disease Pathogenesis and Cognition. J Alzheimers Dis. 2018;66(1):11-23. PMID:30282360 doi:10.3233/JAD-180433
- ↑ Bower RL, Hay DL. Amylin structure-function relationships and receptor pharmacology: implications for amylin mimetic drug development. Br J Pharmacol. 2016 Jun;173(12):1883-98. PMID:27061187 doi:10.1111/bph.13496
Bower, R.; Hay, D. Amylin structure-function relationships and receptor pharmacology: implications for amylin mimetic drug development. British Journal of Pharmacology. 2016, 173, 1883-1898. [1].
Cao, J.; Belousoff, J.; Liang, Y.; Johnson, R.; Josephs, T.; Fletcher, M.; Christopoulus, A.; Hay, D.; Danev, R.; Wootten, D.; Sexton, P. A structural basis for amylin receptor phenotype. Science. 2022, 375. [2].
Gomez, W.; Morales, R.; Maracaja-Coutinho, V.; Parra, V.; Nassif, M. Down syndrome and Alzheimer’s Disease: common molecular traits beyond amyloid precursor protein. Aging. 2020, 12, 1101-1033. [3].
Grizzanti, J.; Corrigan, R.; Casadesus, G. Neuroprotective Effects of Amylin Analogues on Alzheimer’s Disease Pathogenesis and Cognition. Journal of Alzheimer’s Disease. 2019, 66, 11-23. [4].
Hay, D.; Chen, S.; Lutz, T.; Parkes, D.; Roth, J. Amylin: Pharmacology, Physiology, and Clinical Potential. Pharmacological Reviews. 2015, 67, 564-600. [5].
Student Contributors
- Brynn Baker
- Emily Berkman
- Sepp Hall
