Product References


References for Product with Cat. No. M 034:

19
Van Kolen, K.; Verstraeten, K.; Royaux, I.; De Hoogt, R.; Gutknecht, E.; Peeters, P.J., Neuropharmacology [Epub ahead of print] (2009): "Corticotropin Releasing Factor-induced ERK Phosphorylation in AtT20 Cells Occurs via a cAMP-dependent Mechanism Requiring EPAC2"
18
Wang, P.; Wang, Q; Sun, J.; Wu, J.; Li, H.; Zhang, N.; Huang, Y.; Su, B.; Li, R.-K.; Liu, L.; Zhang, Y.; Elsholtz, H.P.; Hu, J.; Gaisano, H.Y.; Jin, T., J. Biol. Chem. [Epub ahead of print] (2009): "POU Homeodomain Protein Oct-1 Functions as a Sensor for Cyclic AMP"
17
Hochbaum, D.; Hong, K.; Barila, G.; Ribeiro-Neto, F.; Altschuler, D., J. Biol. Chem., 283, 4464 - 4468 (2008): "Epac, in Synergy with PKA, is Required for cAMP-mediated Mitogenesis"
16
Hong, K.; Lou, L.; Gupta, S.; Ribeiro-Neto, F.; Altschuler, D.L., J. Biol. Chem., 283, 23129 - 23138 (2008): "A Novel Epac-Rap-PP2A Signaling Module Controls cAMP-dependent Akt Regulation"
15
Schmidt, M.; Sand, C.; Jakobs, K.H.; Michel, M.C.; Weernink, P.A., Curr. Opin. Pharmacol., 7, 193 - 200 (2007): "Epac and the Cardiovascular System"
14
Amano, R.; Lee, J.; Goto, N.; Harayama, H., J. Reprod. Develop., 53, 127 - 133 (2007): "Evidence for Existence of cAMP-Epac Signaling in the Heads of Mouse Epididymal Spermatozoa"
13
Li, J.; O'Connor, K.L.; Cheng, X.; Mei, F.C.; Uchida, T.; Townsend, C.M.; Evers, M., Mol. Endocrinol., 21, 159 - 171 (2007): "Cyclic AMP-stimulated Neurotensin Secretion is Mediated Through Rap1 Downstream of Both Epac and PKA Signaling Pathways"
12
Wayne, C.M.; Fan, H.-F.; Cheng, X.; Richards, J.S., Mol. Endocrinol. (2007): "FSH-induces Multiple Signaling Cascades: Evidence that Activation of SRC, RAS and the EGF Receptor are Critical for Granulosa Cell Differentiation"
11
Holz, G.G.; Chepurny, O.G.; Schwede, F.S., Cell. Signal., 20, 10 - 20 (2007): "Epac-selective cAMP Analogs: New Tools with which to Evaluate the Signal Transduction Properties of cAMP-regulated Guanine Nucleotide Exchange Factors"
10
Holz, G.G.; Kang, G.; Harbeck, M.; Roe, M.W.; Chepurny, O.G., J. Physiol.- London, 577, 5 - 15 (2006): "Cell Physiology of cAMP Sensor Epac"
9
Lotfi, S.; Li, Z.; Sun, J.; Zuo, Y.; Lamm, P.P.; Kang, Y.; Rahimi, M.; Islam, D.; Wang, P., Endocrinology, 147, 3727 - 3736 (2006): "Role of Excange Protein Directly Activated by cyclic Adenosine 5'-monophosphate (Epac) Pathway in Regulating Proglucagon Gene Expression in Intestinal Endocrine L Cells"
8
Kang, G.X.; Chepurny, O.G.; Malester, B.; Rindler, M.J.; Rehmann, H.; Barrere-Lemaire, S.; Schwede, F.; Coetzee, W.A.; Holz, G.G., J. Physiol.-London, 573, 595 - 609 (2006): "cAMP Sensor Epac as a Determinant of ATP-sensitive Potassium Channel Activity in Human Pancreatic Beta Cells and Rat INS-1 Cells"
7
Kiermayer, S.; Biondi, R.M.; Imig, J.; Plotz, G.; Haupenthal, J.; Zeuzem, S.; Piiper, A., Mol. Biol. Cell., 16, 5639 - 5648 (2005): "Epac Activation Converts cAMP from a Proliferative into a Differentiation Signal in PC12 Cells"
6
Persson, E.; Voznesensky, O.S.; Huang, Y.F.; Lerner, U.H., Bone, 37, 513 - 529 (2005): "Increased Expression of Interleukin-6 by Vasoactive Intestinal Peptide is Associated with Regulation of CREB, AP-1 and C/EBP, but not NF-kappa B, in Mouse Calvarial Osteoblasts"
5
Delghandi, M.P.; Johannessen, M.; Moens, U., Cell. Signal., 17, 1343 - 1351 (2005): "The cAMP Signalling Pathway Activates CREB through PKA, p38 and MSK1 in NIH 3T3 Cells"
4
Genieser, H.-G.; Barrere-Lemaire, S.; Christensen, A.E.; Doeskeland, S.O.; Havemann, U.; Manzau, U.; Schwede, F.; Rehmann, H., Poster #THP016 Montreal, 12 (2004): "Analogues of Cyclic AMP to Distinguish Between PKA and Epac"
3
Dyachok, O.; Gylfe, E., J. Biol. Chem., 279, 45455 - 45461 (2004): "Ca2+-induced Ca2+ Release via Inositol 1,4,5-triphosphate Receptors is Amplified by Protein Kinase A and Triggers Exocytosis in Pancreatic Beta-cells"
2
Chen, L.; Wang, P.; Andrade, C.F.; Zhao, I.Y.; Dube, P.E.; Brubaker, P.L.; Liu, M.; Jin, T., FEBS J., 272, 2746 - 2759 (2004): "PKA Independent and Cell Type Specific Activation of the Expression of Caudal Homeobox Gene Cdx-2 by cyclic AMP"
1
Christensen, A.E.; Selheim, F.; de Rooij, J.; Dremier, S.; Schwede, F.; Dao, K.K.; Martinez, A.; Maenhaut, C.; Barrere-Lemaire, S.; Genieser, H.-G.; Doeskeland, S.O., J. Biol. Chem., 278, 35394 - 35402 (2003): "cAMP Analog Mapping of Epac1 and cAMP-Kinase. Discriminating Analogs Demonstrate that Epac and cAMP-Kinase Act Synergistically to Promote PC-12 Cell Neurite Extension"

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August 04, 2010

ε-NAADP and 8-Br-7-CH-NAD+ available !

Two new compounds have been added to our product line of high purity NAD+ and cADPR analogues:... [more...]

June 07, 2010

New NAD and cADPR analogues !

Latest additions to our expanding product line of NAD+ and cADPR analogues are:

8-Br-7-CH-cADP... [more...]

Last modified: January 28, 2008