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Summary Expression Phenotypes Gene Literature (86) GO Terms (2) Nucleotides (498) Proteins (83) Interactants (443) Wiki
XB-GENEPAGE-6046301

Papers associated with tpm3



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Evidence for an alternate model of human P-glycoprotein structure and biogenesis., Skach WR, Calayag MC, Lingappa VR., J Biol Chem. April 5, 1993; 268 (10): 6903-8.


Protein kinase C transiently activated heteromeric N-methyl-D-aspartate receptor channels independent of the phosphorylatable C-terminal splice domain and of consensus phosphorylation sites., Sigel E, Baur R, Malherbe P., J Biol Chem. March 18, 1994; 269 (11): 8204-8.


Transmembrane orientation and topogenesis of the third and fourth membrane-spanning regions of human P-glycoprotein (MDR1)., Skach WR, Lingappa VR., Cancer Res. June 15, 1994; 54 (12): 3202-9.


Agonist selectivity of glutamate receptors is specified by two domains structurally related to bacterial amino acid-binding proteins., Stern-Bach Y, Bettler B, Hartley M, Sheppard PO, O'Hara PJ, Heinemann SF., Neuron. December 1, 1994; 13 (6): 1345-57.


A novel tropomyosin isoform encoded by the Xenopus laevis alpha-TM gene is expressed in the brain., Gaillard C, Thézé N, Lerivray H, Hardy S, Lepetit D, Thiébaud P., Gene. January 30, 1998; 207 (2): 235-9.


Subunit mutations affect ethanol actions on GABA(A) receptors expressed in Xenopus oocytes., Ueno S, Wick MJ, Ye Q, Harrison NL, Harris RA., Br J Pharmacol. May 1, 1999; 127 (2): 377-82.


Amino acid volume and hydropathy of a transmembrane site determine glycine and anesthetic sensitivity of glycine receptors., Yamakura T, Mihic SJ, Harris RA., J Biol Chem. August 13, 1999; 274 (33): 23006-12.


Two skeletal alpha-tropomyosin transcripts with distinct 3'UTR have different temporal and spatial patterns of expression in the striated muscle lineages of Xenopus laevis., Hardy S, Hamon S, Cooper B, Mohun T, Thiébaud P., Mech Dev. September 1, 1999; 87 (1-2): 199-202.    


The actions of ether, alcohol and alkane general anaesthetics on GABAA and glycine receptors and the effects of TM2 and TM3 mutations., Krasowski MD, Harrison NL., Br J Pharmacol. February 1, 2000; 129 (4): 731-43.


Reorientation of aquaporin-1 topology during maturation in the endoplasmic reticulum., Lu Y, Turnbull IR, Bragin A, Carveth K, Verkman AS, Skach WR., Mol Biol Cell. September 1, 2000; 11 (9): 2973-85.


Benzodiazepines act on GABAA receptors via two distinct and separable mechanisms., Walters RJ, Hadley SH, Morris KD, Amin J., Nat Neurosci. December 1, 2000; 3 (12): 1274-81.


Ethanol inhibition of N-methyl-D-aspartate receptors is reduced by site-directed mutagenesis of a transmembrane domain phenylalanine residue., Ronald KM, Mirshahi T, Woodward JJ., J Biol Chem. November 30, 2001; 276 (48): 44729-35.


Structural basis for activation of G-protein-coupled receptors., Gether U, Asmar F, Meinild AK, Rasmussen SG., Pharmacol Toxicol. December 1, 2002; 91 (6): 304-12.


Acetylcholine and alcohol sensitivity of neuronal nicotinic acetylcholine receptors: mutations in transmembrane domains., Borghese CM, Ali DN, Bleck V, Harris RA., Alcohol Clin Exp Res. December 1, 2002; 26 (12): 1764-72.


Xenopus muscle development: from primary to secondary myogenesis., Chanoine C, Hardy S., Dev Dyn. January 1, 2003; 226 (1): 12-23.  


A new Chrna4 mutation with low penetrance in nocturnal frontal lobe epilepsy., Leniger T, Kananura C, Hufnagel A, Bertrand S, Bertrand D, Steinlein OK., Epilepsia. July 1, 2003; 44 (7): 981-5.


Single-channel SCAM identifies pore-lining residues in the first extracellular loop and first transmembrane domains of Cx46 hemichannels., Kronengold J, Trexler EB, Bukauskas FF, Bargiello TA, Verselis VK., J Gen Physiol. October 1, 2003; 122 (4): 389-405.                    


Tryptophan substitutions reveal the role of nicotinic acetylcholine receptor alpha-TM3 domain in channel gating: differences between Torpedo and muscle-type AChR., Navedo M, Nieves M, Rojas L, Lasalde-Dominicci JA., Biochemistry. January 13, 2004; 43 (1): 78-84.


Mechanism of proton gating of a urea channel., Weeks DL, Gushansky G, Scott DR, Sachs G., J Biol Chem. March 12, 2004; 279 (11): 9944-50.


Salicylidene salicylhydrazide, a selective inhibitor of beta 1-containing GABAA receptors., Thompson SA, Wheat L, Brown NA, Wingrove PB, Pillai GV, Whiting PJ, Adkins C, Woodward CH, Smith AJ, Simpson PB, Collins I, Wafford KA., Br J Pharmacol. May 1, 2004; 142 (1): 97-106.


Cross-linking of glycine receptor transmembrane segments two and three alters coupling of ligand binding with channel opening., Lobo IA, Trudell JR, Harris RA., J Neurochem. August 1, 2004; 90 (4): 962-9.


Channel gating of the glycine receptor changes accessibility to residues implicated in receptor potentiation by alcohols and anesthetics., Lobo IA, Mascia MP, Trudell JR, Harris RA., J Biol Chem. August 6, 2004; 279 (32): 33919-27.


Tryptophan scanning mutagenesis in the TM3 domain of the Torpedo californica acetylcholine receptor beta subunit reveals an alpha-helical structure., Santiago J, Guzmán GR, Torruellas K, Rojas LV, Lasalde-Dominicci JA., Biochemistry. August 10, 2004; 43 (31): 10064-70.


P2Y(1) receptor modulation of endogenous ion channel function in Xenopus oocytes: Involvement of transmembrane domains., Lee SY, Nicholas RA, O'Grady SM., Purinergic Signal. December 1, 2004; 1 (1): 75-81.          


Exploration of the extracellular space by a large-scale secretion screen in the early Xenopus embryo., Pera EM, Hou S, Strate I, Wessely O, De Robertis EM., Int J Dev Biol. January 1, 2005; 49 (7): 781-96.                                  


Differential stability of biogenesis intermediates reveals a common pathway for aquaporin-1 topological maturation., Buck TM, Skach WR., J Biol Chem. January 7, 2005; 280 (1): 261-9.


An atlas of differential gene expression during early Xenopus embryogenesis., Pollet N, Muncke N, Verbeek B, Li Y, Fenger U, Delius H, Niehrs C., Mech Dev. March 1, 2005; 122 (3): 365-439.                                                                                                                                                        


The role of charged residues in the transmembrane helices of monocarboxylate transporter 1 and its ancillary protein basigin in determining plasma membrane expression and catalytic activity., Manoharan C, Wilson MC, Sessions RB, Halestrap AP., Mol Membr Biol. January 1, 2006; 23 (6): 486-98.                


Sites in TM2 and 3 are critical for alcohol-induced conformational changes in GABA receptors., Jung S, Harris RA., J Neurochem. February 1, 2006; 96 (3): 885-92.


Effects of anesthetics on mutant N-methyl-D-aspartate receptors expressed in Xenopus oocytes., Ogata J, Shiraishi M, Namba T, Smothers CT, Woodward JJ, Harris RA., J Pharmacol Exp Ther. July 1, 2006; 318 (1): 434-43.


The residues determining differences in ion affinities among the alternative splice variants F, A, and B of the mammalian renal Na-K-Cl cotransporter (NKCC2)., Giménez I, Forbush B., J Biol Chem. March 2, 2007; 282 (9): 6540-7.


Effects of a mutation in the TM2-TM3 linker region of the glycine receptor alpha1 subunit on gating and allosteric modulation., Dupre ML, Broyles JM, Mihic SJ., Dev Biol. June 4, 2007; 1152 1-9.


Cross-linking of sites involved with alcohol action between transmembrane segments 1 and 3 of the glycine receptor following activation., Lobo IA, Harris RA, Trudell JR., J Neurochem. March 1, 2008; 104 (6): 1649-62.


Human nocturnal frontal lobe epilepsy: pharmocogenomic profiles of pathogenic nicotinic acetylcholine receptor beta-subunit mutations outside the ion channel pore., Hoda JC, Gu W, Friedli M, Phillips HA, Bertrand S, Antonarakis SE, Goudie D, Roberts R, Scheffer IE, Marini C, Patel J, Berkovic SF, Mulley JC, Steinlein OK, Bertrand D., Mol Pharmacol. August 1, 2008; 74 (2): 379-91.


The role of residues in binding loop A in desflurane and propofol modulation of recombinant 5-HT3A receptor., Koo BN, Kim MK, Yang J, Min KT., Neurosci Lett. November 13, 2009; 465 (2): 147-50.


Linking of Glycine Receptor Transmembrane Segments Three and Four Allows Assignment of Intrasubunit-Facing Residues., McCracken LM, McCracken ML, Gong DH, Trudell JR, Harris RA., ACS Chem Neurosci. July 1, 2010; 1 (7): 482.


Nicotinic acetylcholine receptor transmembrane mutations convert ivermectin from a positive to a negative allosteric modulator., Collins T, Millar NS., Mol Pharmacol. August 1, 2010; 78 (2): 198-204.


SCAM analysis of Panx1 suggests a peculiar pore structure., Wang J, Dahl G., J Gen Physiol. November 1, 2010; 136 (5): 515-27.                  


Ligand- and subunit-specific conformational changes in the ligand-binding domain and the TM2-TM3 linker of {alpha}1 {beta}2 {gamma}2 GABAA receptors., Wang Q, Pless SA, Lynch JW., J Biol Chem. December 17, 2010; 285 (51): 40373-86.


Mutations in the transmembrane domain M3 generate spontaneously open orphan glutamate δ1 receptor., Yadav R, Rimerman R, Scofield MA, Dravid SM., Dev Biol. March 25, 2011; 1382 1-8.


A mutant residue in the third transmembrane region of the GABA(A) alpha1 subunit causes increased agonistic neurosteroid responses., Williams DB., Neurochem Int. June 1, 2011; 58 (7): 794-803.


Conserved residues in the extracellular loops of short-wavelength cone visual pigments., Chen MH, Sandberg DJ, Babu KR, Bubis J, Surya A, Ramos LS, Zapata HJ, Galan JF, Sandberg MN, Birge RR, Knox BE., Biochemistry. August 16, 2011; 50 (32): 6763-73.


Competitive binding at a nicotinic receptor transmembrane site of two α7-selective positive allosteric modulators with differing effects on agonist-evoked desensitization., Collins T, Young GT, Millar NS., Neuropharmacology. December 1, 2011; 61 (8): 1306-13.              


Characterization of two mutations, M287L and Q266I, in the α1 glycine receptor subunit that modify sensitivity to alcohols., Borghese CM, Blednov YA, Quan Y, Iyer SV, Xiong W, Mihic SJ, Zhang L, Lovinger DM, Trudell JR, Homanics GE, Harris RA., J Pharmacol Exp Ther. February 1, 2012; 340 (2): 304-16.


Cystic fibrosis transmembrane conductance regulator: a molecular model defines the architecture of the anion conduction path and locates a "bottleneck" in the pore., Norimatsu Y, Ivetac A, Alexander C, Kirkham J, O'Donnell N, Dawson DC, Sansom MS., Biochemistry. March 20, 2012; 51 (11): 2199-212.


The N-terminal half of the connexin protein contains the core elements of the pore and voltage gates., Kronengold J, Srinivas M, Verselis VK., J Membr Biol. August 1, 2012; 245 (8): 453-63.


The importance of being aromatic: π interactions in sodium symporters., Jiang X, Loo DD, Hirayama BA, Wright EM., Biochemistry. November 27, 2012; 51 (47): 9480-7.


Analysis of trafficking, stability and function of human connexin 26 gap junction channels with deafness-causing mutations in the fourth transmembrane helix., Ambrosi C, Walker AE, Depriest AD, Cone AC, Lu C, Badger J, Skerrett IM, Sosinsky GE., PLoS One. January 1, 2013; 8 (8): e70916.                        


The relative orientation of the TM3 and TM4 domains varies between α1 and α3 glycine receptors., Han L, Talwar S, Lynch JW., ACS Chem Neurosci. February 20, 2013; 4 (2): 248-54.


Structural model of the anion exchanger 1 (SLC4A1) and identification of transmembrane segments forming the transport site., Barneaud-Rocca D, Etchebest C, Guizouarn H., J Biol Chem. September 13, 2013; 288 (37): 26372-84.

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