Biology Reference
In-Depth Information
78. Gelber EI, Kroeze WK, Willins DL, et al. Structure and function of the third intracel-
lular loop of the 5-hydroxytryptamine2A receptor: the third intracellular loop is alpha-
helical and binds purified arrestins. J Neurochem . 1999;72(5):2206- 2214.
79. Avissar S, Matuzany-Ruban A, Tzukert K, Schreiber G. Beta-arrestin-1 levels: reduced
in leukocytes of patients with depression and elevated by antidepressants in rat brain.
Am J Psychiatry . 2004;161(11):2066 - 2072.
80. Corne SJ, Pickering RW. A possible correlation between drug-induced hallucinations
in man and a behavioural response in mice. Psychopharmacologia . 1967;11(1):65- 78.
81. Corne SJ, Pickering RW, Warner BT. A method for assessing the effects of drugs on
the central actions of 5-hydroxytryptamine. Br J Pharmacol Chemother . 1963;20:
106- 120.
82. Meltzer HY. Action of atypical antipsychotics. Am J Psychiatry . 2002;159(1):153- 154
author reply 154 - 5.
83. Bockaert J, Claeysen S, Compan V, Dumuis A. 5-HT4 receptors. Curr Drug Targets
CNS Neurol Disord . 2004;3(1):39- 51.
84. Barthet G, Gaven F, Framery B, et al. Uncoupling and endocytosis of 5-
hydroxytryptamine 4 receptors. Distinct molecular events with different GRK2
requirements. J Biol Chem . 2005;280(30):27924- 27934.
85. Barthet G, Carrat G, Cassier E, et al. Beta-arrestin1 phosphorylation by GRK5 regu-
lates G protein-independent 5-HT4 receptor
signalling. EMBO J . 2009;28
(18):2706- 2718.
86. Claeysen S, SebbenM, Becamel C, Bockaert J, Dumuis A. Novel brain-specific 5-HT4
receptor splice variants show marked constitutive activity: role of the C-terminal intra-
cellular domain. Mol Pharmacol . 1999;55(5):910- 920.
87. Mnie-Filali O, Amraei MG, Benmbarek S, et al. Serotonin 4 receptor (5-HT4R) inter-
nalization is isoform-specific: effects of 5-HT and RS67333 on isoforms A and B. Cell
Signal . 2010;22(3):501 - 509.
88. Bhatnagar A, Willins DL, Gray JA, Woods J, Benovic JL, Roth BL. The dynamin-
dependent, arrestin-independent internalization of 5-hydroxytryptamine 2A (5-
HT2A) serotonin receptors reveals differential sorting of arrestins and 5-HT2A recep-
tors during endocytosis. J Biol Chem . 2001;276(11):8269- 8277.
89. Bhattacharya A, Sankar S, Panicker MM. Differences in the C-terminus contribute to
variations in trafficking between rat and human 5-HT(2A) receptor isoforms: identi-
fication of a primate-specific tripeptide ASK motif that confers GRK-2 and beta
arrestin-2 interactions. J Neurochem . 2010;112(3):723- 732.
90. Schmid CL, Bohn LM. Serotonin, but not N-methyltryptamines, activates the seroto-
nin 2A receptor via a ss-arrestin2/Src/Akt signaling complex in vivo. J Neurosci .
2010;30(40):13513- 13524.
91. Schmid CL, Raehal KM, Bohn LM. Agonist-directed signaling of the serotonin 2A
receptor depends on beta-arrestin-2 interactions in vivo. Proc Natl Acad Sci USA .
2008;105(3):1079- 1084.
92. Werry TD, Gregory KJ, Sexton PM, Christopoulos A. Characterization of serotonin
5-HT2C receptor
signaling to extracellular
signal-regulated kinases 1 and 2.
J Neurochem . 2005;93(6):1603- 1615.
93. Labasque M, Reiter E, Becamel C, Bockaert J, Marin P. Physical interaction of calmod-
ulin with the 5-hydroxytryptamine2C receptor C-terminus is essential for G protein-
independent,
arrestin-dependent
receptor
signaling. Mol Biol Cell . 2008;19
(11):4640- 4650.
94. Lin FT, Krueger KM, Kendall HE, et al. Clathrin-mediated endocytosis of the beta-
adrenergic receptor is regulated by phosphorylation/dephosphorylation of beta-
arrestin1. J Biol Chem . 1997;272(49):31051- 31057.
 
 
 
Search WWH ::




Custom Search