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- Amrinone ... rdiac contractility, vasodilator. Acts by inhibiting the breakdown of both cAMP and cGMP983 B (129 words) - 05:58, 24 October 2008
- Melatonin ... ptor type 1A, which then acts on adenylate cylcase and the inhibition of a cAMP signal transduction pathway. Melatonin not only inhibits adenylate cyclase ...5 KB (673 words) - 09:16, 19 February 2009
- Prostacyclin ... receptor]]s and in the same manner raise cAMP levels in the cytosol. This cAMP then goes on to activate [[protein kinase A]] (PKA). PKA then continues th ...8 KB (1096 words) - 09:52, 20 February 2009
- Glucagon ... manufactures [[cAMP]] (cyclical AMP) which activates [[protein kinase A]] (cAMP-dependent protein kinase). This enzyme in turn activates [[phosphorylase k ... ... with [[beta blocker]]s; the likely mechanism of action is the increase of cAMP in the [[myocardium]], effectively bypassing the inhibitory action of the ...12 KB (1655 words) - 08:05, 17 February 2009
- Diuretic hormone class 2 ... secretion by Malpighian tubules and causes a dose-dependent stimulation of cAMP levels in the tubules. Has a nonselective effect on Na(+)/K(+) ion transpo ...926 B (106 words) - 06:49, 11 December 2009
- Antidiuretic factor A ... ses cGMP as a second messenger and inhibits fluid production by decreasing cAMP concentration. Reduces isosmotic fluid secretion by inhibiting electroneut ...856 B (95 words) - 06:49, 11 December 2009
- Parathyroid hormone (Parathyrin) (PTH) ... cell]]s responsible for PTH secretion is [[Cyclic adenosine monophosphate|cAMP]].<ref name=brs />12 KB (1604 words) - 08:15, 17 February 2009
- Diuretic hormone 2 ... secretion by Malpighian tubules and causes a dose-dependent stimulation of cAMP levels in the tubules748 B (79 words) - 06:58, 11 December 2009
- Diuretic hormone class 1 ... secretion by Malpighian tubules and causes a dose-dependent stimulation of cAMP levels in the tubules. Has a greater effect on the transport of Na(+) then ...920 B (107 words) - 06:58, 11 December 2009
- Diuretic hormone ... secretion by Malpighian tubules and causes a dose-dependent stimulation of cAMP levels in the tubules702 B (73 words) - 06:58, 11 December 2009
- Insulin B chain ... actors, [[E-box]]es bind to [[NeuroD]], [[C-box]]es bind to [[MafA]] and [[cAMP response element]]s to [[CREB]]. | [[CREB#cAMP_response_element|CREB RE]] || -41 KB (5927 words) - 06:25, 18 February 2009
- Calcitonin ... b>]] to [[adenylyl cyclase]] and thereby to the generation of [[cyclic AMP|cAMP]] in target cells.13 KB (1674 words) - 09:15, 11 December 2009
- Glycoprotein hormone alpha-2 Stimulates the thyroid. Binds and activates THSR, leads to increased cAMP production672 B (68 words) - 10:13, 11 December 2009
- Glycoprotein hormone beta-5 Stimulates the thyroid. Binds and activates THSR, leading to increased cAMP production665 B (68 words) - 04:22, 14 December 2009
- 5-hydroxytryptamine receptor 5A ... -hydroxytryptamine]] and couples to [[G protein]]s, negatively influencing cAMP levels via G<sub>i</sub> and G<sub>o</sub>.<ref name="pmid9865521">{{cite ...11 KB (1448 words) - 04:08, 16 December 2009
- Steroidogenic factor 1 ... ONO-NR5A1/SF-1 complex binds to the CYP17 promoter and regulates basal and cAMP- dependent transcriptional avtivity. Binds phospholipids with a phosphatid ...1 KB (157 words) - 09:13, 15 December 2009
- Relaxin receptor 2 ... G proteins leading to stimulation of adenylate cyclase and an increase of cAMP. May also be a receptor for Leydig insulin-like peptide (INSL3) (By simila ...763 B (89 words) - 10:12, 16 December 2009
- Relaxin-3 receptor 2 Receptor for relaxin-3. Binding of the ligand inhibits cAMP accumulation (By similarity).572 B (59 words) - 10:18, 16 December 2009
- Relaxin-3 receptor 1 Receptor for relaxin-3. Binding of the ligand inhibit cAMP accumulation (By similarity).571 B (59 words) - 10:22, 16 December 2009
- Relaxin receptor 1 ... se pathway that inhibits the activity of a phosphodiesterase that degrades cAMP.833 B (99 words) - 10:36, 16 December 2009