Biomedical Engineering Reference
In-Depth Information
Wolff MS, Tong X, Holt TG, Waters MG, Hammond ML, Tata JR, Colletti SL (2010) Discovery
of a biaryl cyclohexene carboxylic acid (MK-6892): a potent and selective high affinity niacin
receptor full agonist with reduced flushing profiles in animals as a preclinical candidate. J Med
Chem 53(6):2666-2670. doi: 10.1021/jm100022r
Shi GW, Chen J, Concepcion F, Motamedchaboki K, Marjoram P, Langen R (2005) Light causes
phosphorylation of nonactivated visual pigments in intact mouse rod photoreceptor cells. J Biol
Chem 280(50):41184-41191. doi: 10.1074/jbc.M506935200 , pii:M506935200
Sjogren B (2011) Regulator of G protein signaling proteins as drug targets: current state and future
possibilities. Adv Pharmacol 62:315-347. doi: 10.1016/B978-0-12-385952-5.00002-6 , pii:B978-
0-12-385952-5.00002-6
Sujino M, Masumoto KH, Yamaguchi S, van der Horst GT, Okamura H, Inouye ST (2003)
Suprachiasmatic nucleus grafts restore circadian behavioral rhythms of genetically arrhythmic
mice. Curr Biol 13(8):664-668, pii:S0960982203002227
Vassilatis DK, Hohmann JG, Zeng H, Li F, Ranchalis JE, Mortrud MT, Brown A, Rodriguez SS,
Weller JR, Wright AC, Bergmann JE, Gaitanaris GA (2003) The G protein-coupled receptor
repertoires of human and mouse. Proc Natl Acad Sci USA 100(8):4903-4908
Walters RW, Shukla AK, Kovacs JJ, Violin JD, DeWire SM, Lam CM, Chen JR, Muehlbauer MJ,
Whalen EJ, Lefkowitz RJ (2009) Beta-Arrestin1 mediates nicotinic acid-induced flushing, but
not its antilipolytic effect, in mice. J Clin Invest 119(5):1312-1321. doi: 10.1172/JCI36806 ,
pii:36806
Wu B, Chien EY, Mol CD, Fenalti G, Liu W, Katritch V, Abagyan R, Brooun A, Wells P, Bi FC,
Hamel DJ, Kuhn P, Handel TM, Cherezov V, Stevens RC (2010) Structures of the CXCR4
chemokine GPCR with small-molecule and cyclic peptide antagonists. Science 330(6007):1066-
1071. doi: 10.1126/science.1194396 , pii:science.1194396
Zhang EE, Liu Y, Dentin R, Pongsawakul PY, Liu AC, Hirota T, Nusinow DA, Sun X, Landais S,
Kodama Y, Brenner DA, Montminy M, Kay SA (2010) Cryptochrome mediates circadian regu-
lation of cAMP signaling and hepatic gluconeogenesis. Nat Med 16(10):1152-1156.
doi: 10.1038/nm.2214 , pii:nm.2214
Search WWH ::




Custom Search