Publications
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A Caenorhabditis elegans p38 MAP kinase pathway mutant protects from dopamine, methamphetamine, and MDMA toxicity.
Schreiber MA,
McIntire SL.
Neurosci Lett.
2011;
498
(1):
99-103
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A novel zf-MYND protein, CHB-3, mediates guanylyl cyclase localization to sensory cilia and controls body size of Caenorhabditis elegans.
Fujiwara M,
Teramoto T, Ishihara T, Ohshima Y, McIntire SL.
PLoS Genet.
2010;
6
(11):
e1001211
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Conserved role of unc-79 in ethanol responses in lightweight mutant mice.
Speca DJ,
Chihara D, Ashique AM, Bowers MS, Pierce-Shimomura JT, Lee J, Rabbee N, Speed TP, Gularte RJ, Chitwood J, Medrano JF, Liao M, Sonner JM, Eger EI, Peterson AS, McIntire SL.
PLoS Genet.
2010;
6
(8)
-
Ethanol.
McIntire SL,
WormBook.
2010:
1-6
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Manipulation of behavioral decline in Caenorhabditis elegans with the Rag GTPase raga-1.
Schreiber MA,
Pierce-Shimomura JT, Chan S, Parry D, McIntire SL.
PLoS Genet.
2010;
6
(5):
e1000972
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Ethanol preference in C. elegans.
Lee J,
Jee C, McIntire SL.
Genes Brain Behav.
2009;
8
(6):
578-85
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The dystrophin complex controls bk channel localization and muscle activity in Caenorhabditis elegans.
Kim H,
Pierce-Shimomura JT, Oh HJ, Johnson BE, Goodman MB, McIntire SL.
PLoS Genet.
2009;
5
(12):
e1000780
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Genetic analysis of crawling and swimming locomotory patterns in C. elegans.
Pierce-Shimomura JT,
Chen BL, Mun JJ, Ho R, Sarkis R, McIntire SL.
Proc Natl Acad Sci U S A.
2008;
105
(52):
20982-7
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Loss of RAB-3/A in Caenorhabditis elegans and the mouse affects behavioral response to ethanol.
Kapfhamer D,
Bettinger JC, Davies AG, Eastman CL, Smail EA, Heberlein U, McIntire SL.
Genes Brain Behav.
2008;
7
(6):
669-76
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The G-protein-coupled serotonin receptor SER-1 regulates egg laying and male mating behaviors in Caenorhabditis elegans.
Carnell L,
Illi J, Hong SW, McIntire SL.
J Neurosci.
2005;
25
(46):
10671-81
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Natural variation in the npr-1 gene modifies ethanol responses of wild strains of C. elegans.
Davies AG,
Bettinger JC, Thiele TR, Judy ME, McIntire SL.
Neuron.
2004;
42
(5):
731-43
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SNF-6 is an acetylcholine transporter interacting with the dystrophin complex in Caenorhabditis elegans.
Kim H,
Rogers MJ, Richmond JE, McIntire SL.
Nature.
2004;
430
(7002):
891-6
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State-dependency in C. elegans.
Bettinger JC,
McIntire SL.
Genes Brain Behav.
2004;
3
(5):
266-72
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The use of Caenorhabditis elegans in molecular neuropharmacology.
Bettinger JC,
Carnell L, Davies AG, McIntire SL.
Int Rev Neurobiol.
2004:
62
195-212
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Using C. elegans to screen for targets of ethanol and behavior-altering drugs.
Davies AG,
McIntire SL.
Biol Proced Online.
2004:
6
113-119
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A central role of the BK potassium channel in behavioral responses to ethanol in C. elegans.
Davies AG,
Pierce-Shimomura JT, Kim H, VanHoven MK, Thiele TR, Bonci A, Bargmann CI, McIntire SL.
Cell.
2003;
115
(6):
655-66
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Regulation of body size and behavioral state of C. elegans by sensory perception and the EGL-4 cGMP-dependent protein kinase.
Fujiwara M,
Sengupta P, McIntire SL.
Neuron.
2002;
36
(6):
1091-102
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A family of yeast proteins mediating bidirectional vacuolar amino acid transport.
Russnak R,
Konczal D, McIntire SL.
J Biol Chem.
2001;
276
(26):
23849-57
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Identification and characterization of the vesicular GABA transporter.
McIntire SL,
Reimer RJ, Schuske K, Edwards RH, Jorgensen EM.
Nature.
1997;
389
(6653):
870-6
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Genes required for GABA function in Caenorhabditis elegans.
McIntire SL,
Jorgensen E, Horvitz HR.
Nature.
1993;
364
(6435):
334-7
-
The GABAergic nervous system of Caenorhabditis elegans.
McIntire SL,
Jorgensen E, Kaplan J, Horvitz HR.
Nature.
1993;
364
(6435):
337-41
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Genes necessary for directed axonal elongation or fasciculation in C. elegans.
McIntire SL,
Garriga G, White J, Jacobson D, Horvitz HR.
Neuron.
1992;
8
(2):
307-22
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A genetic pathway for the development of the Caenorhabditis elegans HSN motor neurons.
Desai C,
Garriga G, McIntire SL, Horvitz HR.
Nature.
1988;
336
(6200):
638-46
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Hypothalamic catecholamine changes under acute stress occur independently of nicotinic stimulation.
Roth KA,
McIntire SL, Lorenz RG, Barchas JD.
Neurosci Lett.
1982;
28
(1):
47-50
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Nicotinic-catecholaminergic interactions in rat brain: evidence for cholinergic nicotinic and muscarinic interactions with hypothalamic epinephrine.
Roth KA,
McIntire SL, Barchas JD.
J Pharmacol Exp Ther.
1982;
221
(2):
416-20
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