-
1
-
-
0035313109
-
The biological chemistry of lead
-
Godwin H.A. The biological chemistry of lead. Curr. Opin. Chem. Biol. 5 (2001) 223-227
-
(2001)
Curr. Opin. Chem. Biol.
, vol.5
, pp. 223-227
-
-
Godwin, H.A.1
-
2
-
-
48049098785
-
Global approach to reducing lead exposure and poisoning
-
Meyer P.A., Brown M.J., and Falk H. Global approach to reducing lead exposure and poisoning. Mutat. Res. 659 (2008) 166-175
-
(2008)
Mutat. Res.
, vol.659
, pp. 166-175
-
-
Meyer, P.A.1
Brown, M.J.2
Falk, H.3
-
3
-
-
33645816554
-
Lead toxicity, a review of the literature. Part 1: Exposure, evaluation, and treatment
-
Patrick L. Lead toxicity, a review of the literature. Part 1: Exposure, evaluation, and treatment. Altern. Med. Rev. 11 (2006) 2-22
-
(2006)
Altern. Med. Rev.
, vol.11
, pp. 2-22
-
-
Patrick, L.1
-
4
-
-
42949089904
-
Lead hepatotoxicity & potential health effects
-
Mudipalli A. Lead hepatotoxicity & potential health effects. Indian J. Med. Res. 126 (2007) 518-527
-
(2007)
Indian J. Med. Res.
, vol.126
, pp. 518-527
-
-
Mudipalli, A.1
-
5
-
-
0037227997
-
Lead neurotoxicity in children: basic mechanisms and clinical correlates
-
Lidsky T.I., and Schneider J.S. Lead neurotoxicity in children: basic mechanisms and clinical correlates. Brain 126 (2003) 5-19
-
(2003)
Brain
, vol.126
, pp. 5-19
-
-
Lidsky, T.I.1
Schneider, J.S.2
-
6
-
-
56249106481
-
Developmental lead exposure impairs extinction of conditioned fear in young adult rats
-
McGlothan J.L., Karcz-Kubicha M., and Guilarte T.R. Developmental lead exposure impairs extinction of conditioned fear in young adult rats. Neurotoxicology 29 (2008) 1127-1130
-
(2008)
Neurotoxicology
, vol.29
, pp. 1127-1130
-
-
McGlothan, J.L.1
Karcz-Kubicha, M.2
Guilarte, T.R.3
-
8
-
-
57249103549
-
Aluminium and lead: molecular mechanisms of brain toxicity
-
Verstraeten S.V., Aimo L., and Oteiza P.I. Aluminium and lead: molecular mechanisms of brain toxicity. Arch. Toxicol. 82 (2008) 789-802
-
(2008)
Arch. Toxicol.
, vol.82
, pp. 789-802
-
-
Verstraeten, S.V.1
Aimo, L.2
Oteiza, P.I.3
-
9
-
-
33846807748
-
Transient receptor potential cation channels in disease
-
Nilius B., Owsianik G., Voets T., and Peters J.A. Transient receptor potential cation channels in disease. Physiol. Rev. 87 (2007) 165-217
-
(2007)
Physiol. Rev.
, vol.87
, pp. 165-217
-
-
Nilius, B.1
Owsianik, G.2
Voets, T.3
Peters, J.A.4
-
11
-
-
59649113294
-
Physiology and pathophysiology of canonical transient receptor potential channels
-
Abramowitz J., and Birnbaumer L. Physiology and pathophysiology of canonical transient receptor potential channels. FASEB J. 23 (2009) 297-328
-
(2009)
FASEB J.
, vol.23
, pp. 297-328
-
-
Abramowitz, J.1
Birnbaumer, L.2
-
12
-
-
33846935212
-
Canonical transient receptor potential 5
-
Beech D.J. Canonical transient receptor potential 5. Handb. Exp. Pharmacol. 109 (2007) 123
-
(2007)
Handb. Exp. Pharmacol.
, vol.109
, pp. 123
-
-
Beech, D.J.1
-
13
-
-
0037423392
-
Lanthanides potentiate TRPC5 currents by an action at extracellular sites close to the pore mouth
-
Jung S., Muhle A., Schaefer M., Strotmann R., Schultz G., and Plant T.D. Lanthanides potentiate TRPC5 currents by an action at extracellular sites close to the pore mouth. J. Biol. Chem. 278 (2003) 3562-3571
-
(2003)
J. Biol. Chem.
, vol.278
, pp. 3562-3571
-
-
Jung, S.1
Muhle, A.2
Schaefer, M.3
Strotmann, R.4
Schultz, G.5
Plant, T.D.6
-
15
-
-
0041708061
-
TRPC5 is a regulator of hippocampal neurite length and growth cone morphology
-
Greka A., Navarro B., Oancea E., Duggan A., and Clapham D.E. TRPC5 is a regulator of hippocampal neurite length and growth cone morphology. Nat. Neurosci. 6 (2003) 837-845
-
(2003)
Nat. Neurosci.
, vol.6
, pp. 837-845
-
-
Greka, A.1
Navarro, B.2
Oancea, E.3
Duggan, A.4
Clapham, D.E.5
-
16
-
-
33645309861
-
Calcium-sensing mechanism in TRPC5 channels contributing to retardation of neurite outgrowth
-
Hui H., McHugh D., Hannan M., Zeng F., Xu S.Z., Khan S.U., Levenson R., Beech D.J., and Weiss J.L. Calcium-sensing mechanism in TRPC5 channels contributing to retardation of neurite outgrowth. J. Physiol. 572 (2006) 165-172
-
(2006)
J. Physiol.
, vol.572
, pp. 165-172
-
-
Hui, H.1
McHugh, D.2
Hannan, M.3
Zeng, F.4
Xu, S.Z.5
Khan, S.U.6
Levenson, R.7
Beech, D.J.8
Weiss, J.L.9
-
17
-
-
34447527574
-
Induction of calcium influx through TRPC5 channels by cross-linking of GM1 ganglioside associated with alpha5beta1 integrin initiates neurite outgrowth
-
Wu G., Lu Z.H., Obukhov A.G., Nowycky M.C., and Ledeen R.W. Induction of calcium influx through TRPC5 channels by cross-linking of GM1 ganglioside associated with alpha5beta1 integrin initiates neurite outgrowth. J. Neurosci. 27 (2007) 7447-7458
-
(2007)
J. Neurosci.
, vol.27
, pp. 7447-7458
-
-
Wu, G.1
Lu, Z.H.2
Obukhov, A.G.3
Nowycky, M.C.4
Ledeen, R.W.5
-
18
-
-
65549115483
-
Essential role for TRPC5 in amygdala function and fear-related behavior
-
Riccio A., Li Y., Moon J., Kim K.S., Smith K.S., Rudolph U., Gapon S., Yao G.L., Tsvetkov E., Rodig S.J., Van't Veer A., Meloni E.G., Carlezon Jr. W.A., Bolshakov V.Y., and Clapham D.E. Essential role for TRPC5 in amygdala function and fear-related behavior. Cell 137 (2009) 761-772
-
(2009)
Cell
, vol.137
, pp. 761-772
-
-
Riccio, A.1
Li, Y.2
Moon, J.3
Kim, K.S.4
Smith, K.S.5
Rudolph, U.6
Gapon, S.7
Yao, G.L.8
Tsvetkov, E.9
Rodig, S.J.10
Van't Veer, A.11
Meloni, E.G.12
Carlezon Jr., W.A.13
Bolshakov, V.Y.14
Clapham, D.E.15
-
19
-
-
33745398345
-
A sphingosine-1-phosphate-activated calcium channel controlling vascular smooth muscle cell motility
-
Xu S.Z., Muraki K., Zeng F., Li J., Sukumar P., Shah S., Dedman A.M., Flemming P.K., McHugh D., Naylor J., Cheong A., Bateson A.N., Munsch C.M., Porter K.E., and Beech D.J. A sphingosine-1-phosphate-activated calcium channel controlling vascular smooth muscle cell motility. Circ. Res. 98 (2006) 1381-1389
-
(2006)
Circ. Res.
, vol.98
, pp. 1381-1389
-
-
Xu, S.Z.1
Muraki, K.2
Zeng, F.3
Li, J.4
Sukumar, P.5
Shah, S.6
Dedman, A.M.7
Flemming, P.K.8
McHugh, D.9
Naylor, J.10
Cheong, A.11
Bateson, A.N.12
Munsch, C.M.13
Porter, K.E.14
Beech, D.J.15
-
20
-
-
64149126449
-
Proteomic-based detection of a protein cluster dysregulated during cardiovascular development identifies biomarkers of congenital heart defects
-
Nath A.K., Krauthammer M., Li P., Davidov E., Butler L.C., Copel J., Katajamaa M., Oresic M., Buhimschi I., Buhimschi C., Snyder M., and Madri J.A. Proteomic-based detection of a protein cluster dysregulated during cardiovascular development identifies biomarkers of congenital heart defects. PLoS One 4 (2009) e4221
-
(2009)
PLoS One
, vol.4
-
-
Nath, A.K.1
Krauthammer, M.2
Li, P.3
Davidov, E.4
Butler, L.C.5
Copel, J.6
Katajamaa, M.7
Oresic, M.8
Buhimschi, I.9
Buhimschi, C.10
Snyder, M.11
Madri, J.A.12
-
21
-
-
0038498142
-
Molecular and functional characterization of the melastatin-related cation channel TRPM3
-
Grimm C., Kraft R., Sauerbruch S., Schultz G., and Harteneck C. Molecular and functional characterization of the melastatin-related cation channel TRPM3. J. Biol. Chem. 278 (2003) 21493-21501
-
(2003)
J. Biol. Chem.
, vol.278
, pp. 21493-21501
-
-
Grimm, C.1
Kraft, R.2
Sauerbruch, S.3
Schultz, G.4
Harteneck, C.5
-
22
-
-
61649089058
-
2+-dependent induction of TRPM2 currents in hippocampal neurons
-
2+-dependent induction of TRPM2 currents in hippocampal neurons. J. Physiol. 587 (2009) 965-979
-
(2009)
J. Physiol.
, vol.587
, pp. 965-979
-
-
Olah, M.E.1
Jackson, M.F.2
Li, H.3
Perez, Y.4
Sun, H.S.5
Kiyonaka, S.6
Mori, Y.7
Tymianski, M.8
MacDonald, J.F.9
-
23
-
-
4644262799
-
Human TRPC5 channel activated by a multiplicity of signals in a single cell
-
Zeng F., Xu S.Z., Jackson P.K., McHugh D., Kumar B., Fountain S.J., and Beech D.J. Human TRPC5 channel activated by a multiplicity of signals in a single cell. J. Physiol. 559 (2004) 739-750
-
(2004)
J. Physiol.
, vol.559
, pp. 739-750
-
-
Zeng, F.1
Xu, S.Z.2
Jackson, P.K.3
McHugh, D.4
Kumar, B.5
Fountain, S.J.6
Beech, D.J.7
-
25
-
-
53849137647
-
Production of a specific extracellular inhibitor of TRPM3 channels
-
Naylor J., Milligan C.J., Zeng F., Jones C., and Beech D.J. Production of a specific extracellular inhibitor of TRPM3 channels. Br. J. Pharmacol. 155 (2008) 567-573
-
(2008)
Br. J. Pharmacol.
, vol.155
, pp. 567-573
-
-
Naylor, J.1
Milligan, C.J.2
Zeng, F.3
Jones, C.4
Beech, D.J.5
-
26
-
-
33846012551
-
Intracellular coiled-coil domain engaged in subunit interaction and assembly of melastatin-related transient receptor potential channel 2
-
Mei Z.Z., Xia R., Beech D.J., and Jiang L.H. Intracellular coiled-coil domain engaged in subunit interaction and assembly of melastatin-related transient receptor potential channel 2. J. Biol. Chem. 281 (2006) 38748-38756
-
(2006)
J. Biol. Chem.
, vol.281
, pp. 38748-38756
-
-
Mei, Z.Z.1
Xia, R.2
Beech, D.J.3
Jiang, L.H.4
-
27
-
-
38049035093
-
TRPC channel activation by extracellular thioredoxin
-
Xu S.Z., Sukumar P., Zeng F., Li J., Jairaman A., English A., Naylor J., Ciurtin C., Majeed Y., Milligan C.J., Bahnasi Y.M., Al-Shawaf E., Porter K.E., Jiang L.H., Emery P., Sivaprasadarao A., and Beech D.J. TRPC channel activation by extracellular thioredoxin. Nature 451 (2008) 69-72
-
(2008)
Nature
, vol.451
, pp. 69-72
-
-
Xu, S.Z.1
Sukumar, P.2
Zeng, F.3
Li, J.4
Jairaman, A.5
English, A.6
Naylor, J.7
Ciurtin, C.8
Majeed, Y.9
Milligan, C.J.10
Bahnasi, Y.M.11
Al-Shawaf, E.12
Porter, K.E.13
Jiang, L.H.14
Emery, P.15
Sivaprasadarao, A.16
Beech, D.J.17
-
28
-
-
57049164233
-
Transient receptor potential M3 channels are ionotropic steroid receptors in pancreatic beta cells
-
Wagner T.F., Loch S., Lambert S., Straub I., Mannebach S., Mathar I., Dufer M., Lis A., Flockerzi V., Philipp S.E., and Oberwinkler J. Transient receptor potential M3 channels are ionotropic steroid receptors in pancreatic beta cells. Nat. Cell Biol. 10 (2008) 1421-1430
-
(2008)
Nat. Cell Biol.
, vol.10
, pp. 1421-1430
-
-
Wagner, T.F.1
Loch, S.2
Lambert, S.3
Straub, I.4
Mannebach, S.5
Mathar, I.6
Dufer, M.7
Lis, A.8
Flockerzi, V.9
Philipp, S.E.10
Oberwinkler, J.11
-
29
-
-
70449753801
-
The amygdala is a chemosensor that detects carbon dioxide and acidosis to elicit fear behavior
-
Ziemann A.E., Allen J.E., Dahdaleh N.S., Drebot I.I., Coryell M.W., Wunsch A.M., Lynch C.M., Faraci F.M., Howard III M.A., Welsh M.J., and Wemmie J.A. The amygdala is a chemosensor that detects carbon dioxide and acidosis to elicit fear behavior. Cell 139 (2009) 1012-1021
-
(2009)
Cell
, vol.139
, pp. 1012-1021
-
-
Ziemann, A.E.1
Allen, J.E.2
Dahdaleh, N.S.3
Drebot, I.I.4
Coryell, M.W.5
Wunsch, A.M.6
Lynch, C.M.7
Faraci, F.M.8
Howard III, M.A.9
Welsh, M.J.10
Wemmie, J.A.11
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