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Cellular Effects of Sildenafil (Viagra)

Erectile Dysfunction (ED), also known as impotence, affects a large segment of the male population over 40 years of age. ED results from impaired relaxation of the smooth muscle cells in the corpus cavernosum and in the penile arteries. Upon sexual stimulation, the increase in parasympathetic activity results in dilation of the cavernosal arteries and increased blood flow. At the same time, relaxation of the trabecular smooth muscle increases the compliance of the cavernous spaces, which facilitates blood flow. The increase in blood volume and the compression of the relaxed trabecular muscle against the tunica albuginea results in collapse of the venules and obstruction of venous outflow...

Cellular Effects of Sildenafil (Viagra)

Pathway Summary

Erectile Dysfunction (ED), also known as impotence, affects a large segment of the male population over 40 years of age. ED results from impaired relaxation of the smooth muscle cells in the corpus cavernosum and in the penile arteries. Upon sexual stimulation, the increase in parasympathetic activity results in dilation of the cavernosal arteries and increased blood flow. At the same time, relaxation of the trabecular smooth muscle increases the compliance of the cavernous spaces, which facilitates blood flow. The increase in blood volume and the compression of the relaxed trabecular muscle against the tunica albuginea results in collapse of the venules and obstruction of venous outflow. Once this occurs, blood ceases to flow through the cavernosal arteries, and a rigid erection occurs. The major mediator of relaxation of the smooth muscle cells in the cavernosal arteries and the trabecular muscle is nitric oxide (NO).Upon sexual stimulation, NO is produced by eNOS in the endothelium of the penile and cavernosal arteries, and by NNOS in the non-adrenergic/non-cholinergic nerve terminals (NANC) that densely innervate the corpus cavernosum. Sexual stimulation also enables the release of neurotransmitters, hormones and ANP, which along with NO regulate the smooth muscle tone by altering cellular Ca2+ levels. NO activates soluble guanylate cyclase (sGC) whereas ANP activates membrane-bound (mGC), which both cause an increase in cGMP levels. Neurotransmitters and hormones activate G-proteins such as G-αs, and bicarbonate ions activate mAC and sAC to increase cAMP levels. G-proteins also stimulate PLC which results in IP3 production. IP3, upon IP3R activation, modulates release of Ca2+ from intracellular calcium stores. These compounds (cAMP, cGMP and Ca2+) cause smooth muscle relaxation through a variety of mechanisms, including protein phosphorylation and gating of ion channels.Smooth muscle tone is regulated by cellular Ca2+, which activates MLCK and results in MLC phosphorylation and muscle contraction. Activation of MLC phosphatase reverses this process to activate actin-myosin cross bridging and smooth muscle relaxation of corpus cavernosum resulting in penile erection. The levels of cGMP and cAMP in the cell reflect the dynamic balance between muscle relaxation and contraction. cAMP activates MLCK activity by increasing Ca2+ influx through CNG and CaCn activation, whereas cAMP-dependent PKA activation inhibits MLCK. Levels of cGMP reflect a balance between production of NO by NOS and degradation of cGMP by cyclic nucleotide phosphodiesterases (PDE). cGMP causes smooth muscle relaxation through a variety of mechanisms that includes phosphorylation and opening of KCn, activation of PKG, and interactions with PDE. Opening of potassium channels leads to hyperpolarization, closure of L-Type Calcium channels and decreased Ca2+ levels, which results in vasodilation. Activation of PKG leads to inhibition of IP3R, Ca2+ export and activation of MLC phosphatase, resulting in smooth muscle relaxation. cGMP activates PDE1, 2 and 4 but inhibits PDE3 to regulate degradation of cAMP. Binding of cGMP to PDE5 is vital for regulation of cGMP levels and ultimately controls vasodilation and penile erection.Aging along with vascular, hormonal or neurological irregularities alter production of NO and disturb the balance between synthesis and degradation of cGMP causing ED. The most common anti-impotence drug Sildenafil, which is marketed under the trade name Viagra, acts as a relatively specific vasodilator of the penile circulation that enhances prolonged muscle relaxation/vasodilation by inhibiting the action of PDE5 to increase cGMP levels.

Cellular Effects of Sildenafil (Viagra) Genes list

Explore Genes related to Cellular Effects of Sildenafil (Viagra)
ACTA1
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Human
actin alpha 1, skeletal muscle
ACTA2
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Human
actin alpha 2, smooth muscle
ACTB
icon_0140_ls_gen_dna_rna-s
Human
actin beta
ACTC1
icon_0140_ls_gen_dna_rna-s
Human
actin alpha cardiac muscle 1
ACTG1
icon_0140_ls_gen_dna_rna-s
Human
actin gamma 1
ACTG2
icon_0140_ls_gen_dna_rna-s
Human
actin gamma 2, smooth muscle
ADCY1
icon_0140_ls_gen_dna_rna-s
Human
adenylate cyclase 1
ADCY10
icon_0140_ls_gen_dna_rna-s
Human
adenylate cyclase 10
ADCY2
icon_0140_ls_gen_dna_rna-s
Human
adenylate cyclase 2
ADCY3
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Human
adenylate cyclase 3
ADCY4
icon_0140_ls_gen_dna_rna-s
Human
adenylate cyclase 4
ADCY5
icon_0140_ls_gen_dna_rna-s
Human
adenylate cyclase 5
ADCY6
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Human
adenylate cyclase 6
ADCY7
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Human
adenylate cyclase 7
ADCY8
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Human
adenylate cyclase 8
ADCY9
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Human
adenylate cyclase 9
CACNA1A
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Human
calcium voltage-gated channel subunit alpha1 A
CACNA1B
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Human
calcium voltage-gated channel subunit alpha1 B
CACNA1C
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Human
calcium voltage-gated channel subunit alpha1 C
CACNA1D
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Human
calcium voltage-gated channel subunit alpha1 D
CACNA1E
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Human
calcium voltage-gated channel subunit alpha1 E
CACNA1F
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Human
calcium voltage-gated channel subunit alpha1 F
CACNA1S
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Human
calcium voltage-gated channel subunit alpha1 S
CACNA2D1
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Human
calcium voltage-gated channel auxiliary subunit alpha2delta 1
CACNA2D2
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Human
calcium voltage-gated channel auxiliary subunit alpha2delta 2
CACNA2D3
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Human
calcium voltage-gated channel auxiliary subunit alpha2delta 3
CACNA2D4
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Human
calcium voltage-gated channel auxiliary subunit alpha2delta 4
CACNB1
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Human
calcium voltage-gated channel auxiliary subunit beta 1
CACNB2
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Human
calcium voltage-gated channel auxiliary subunit beta 2
CACNB3
icon_0140_ls_gen_dna_rna-s
Human
calcium voltage-gated channel auxiliary subunit beta 3
CACNB4
icon_0140_ls_gen_dna_rna-s
Human
calcium voltage-gated channel auxiliary subunit beta 4
CACNG1
icon_0140_ls_gen_dna_rna-s
Human
calcium voltage-gated channel auxiliary subunit gamma 1
CACNG2
icon_0140_ls_gen_dna_rna-s
Human
calcium voltage-gated channel auxiliary subunit gamma 2
CACNG3
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Human
calcium voltage-gated channel auxiliary subunit gamma 3
CACNG4
icon_0140_ls_gen_dna_rna-s
Human
calcium voltage-gated channel auxiliary subunit gamma 4
CACNG5
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Human
calcium voltage-gated channel auxiliary subunit gamma 5
CACNG6
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Human
calcium voltage-gated channel auxiliary subunit gamma 6
CACNG7
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Human
calcium voltage-gated channel auxiliary subunit gamma 7
CACNG8
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Human
calcium voltage-gated channel auxiliary subunit gamma 8
CALML5
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Human
calmodulin like 5
CAMP
icon_0140_ls_gen_dna_rna-s
Human
cathelicidin antimicrobial peptide
GNAS
icon_0140_ls_gen_dna_rna-s
Human
GNAS complex locus
GPR37
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Human
G protein-coupled receptor 37
GUCY1A1
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Human
guanylate cyclase 1 soluble subunit alpha 1
GUCY1A2
icon_0140_ls_gen_dna_rna-s
Human
guanylate cyclase 1 soluble subunit alpha 2
GUCY1B1
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Human
guanylate cyclase 1 soluble subunit beta 1
GUCY1B2
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Human
guanylate cyclase 1 soluble subunit beta 2 (pseudogene)
GUCY2C
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Human
guanylate cyclase 2C
GUCY2D
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Human
guanylate cyclase 2D, retinal
GUCY2F
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Human
guanylate cyclase 2F, retinal
ITPR1
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Human
inositol 1,4,5-trisphosphate receptor type 1
ITPR2
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Human
inositol 1,4,5-trisphosphate receptor type 2
ITPR3
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Human
inositol 1,4,5-trisphosphate receptor type 3
KCNH2
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Human
potassium voltage-gated channel subfamily H member 2
KCNN1
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Human
potassium calcium-activated channel subfamily N member 1
KCNN2
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Human
potassium calcium-activated channel subfamily N member 2
KCNN3
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Human
potassium calcium-activated channel subfamily N member 3
KCNN4
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Human
potassium calcium-activated channel subfamily N member 4
KCNQ2
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Human
potassium voltage-gated channel subfamily Q member 2
KCNQ3
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Human
potassium voltage-gated channel subfamily Q member 3
MPRIP
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Human
myosin phosphatase Rho interacting protein
MYH1
icon_0140_ls_gen_dna_rna-s
Human
myosin heavy chain 1
MYH10
icon_0140_ls_gen_dna_rna-s
Human
myosin heavy chain 10
MYH11
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Human
myosin heavy chain 11
MYH13
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Human
myosin heavy chain 13
MYH14
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Human
myosin heavy chain 14
MYH2
icon_0140_ls_gen_dna_rna-s
Human
myosin heavy chain 2
MYH3
icon_0140_ls_gen_dna_rna-s
Human
myosin heavy chain 3
MYH4
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Human
myosin heavy chain 4
MYH6
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Human
myosin heavy chain 6
MYH7
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Human
myosin heavy chain 7
MYH7B
icon_0140_ls_gen_dna_rna-s
Human
myosin heavy chain 7B
MYH8
icon_0140_ls_gen_dna_rna-s
Human
myosin heavy chain 8
MYH9
icon_0140_ls_gen_dna_rna-s
Human
myosin heavy chain 9
MYL1
icon_0140_ls_gen_dna_rna-s
Human
myosin light chain 1
MYL10
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Human
myosin light chain 10
MYL12A
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Human
myosin light chain 12A
MYL12B
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Human
myosin light chain 12B
MYL2
icon_0140_ls_gen_dna_rna-s
Human
myosin light chain 2
MYL3
icon_0140_ls_gen_dna_rna-s
Human
myosin light chain 3
MYL4
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Human
myosin light chain 4
MYL5
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Human
myosin light chain 5
MYL6
icon_0140_ls_gen_dna_rna-s
Human
myosin light chain 6
MYL6B
icon_0140_ls_gen_dna_rna-s
Human
myosin light chain 6B
MYL7
icon_0140_ls_gen_dna_rna-s
Human
myosin light chain 7
MYL9
icon_0140_ls_gen_dna_rna-s
Human
myosin light chain 9
MYLK
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Human
myosin light chain kinase
MYO10
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Human
myosin X
MYO18A
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Human
myosin XVIIIA
MYO18B
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Human
myosin XVIIIB
MYO1A
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Human
myosin IA
MYO1H
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Human
myosin IH
MYO5C
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Human
myosin VC
NOS3
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Human
nitric oxide synthase 3
NOTUM
icon_0140_ls_gen_dna_rna-s
Human
notum, palmitoleoyl-protein carboxylesterase
NPR1
icon_0140_ls_gen_dna_rna-s
Human
natriuretic peptide receptor 1
NPR2
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Human
natriuretic peptide receptor 2
PABPC4
icon_0140_ls_gen_dna_rna-s
Human
poly(A) binding protein cytoplasmic 4
PDE1A
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Human
phosphodiesterase 1A
PDE1B
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Human
phosphodiesterase 1B
PDE1C
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Human
phosphodiesterase 1C
PDE2A
icon_0140_ls_gen_dna_rna-s
Human
phosphodiesterase 2A
PDE3A
icon_0140_ls_gen_dna_rna-s
Human
phosphodiesterase 3A
PDE3B
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Human
phosphodiesterase 3B
PDE4A
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Human
phosphodiesterase 4A
PDE4B
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Human
phosphodiesterase 4B
PDE4C
icon_0140_ls_gen_dna_rna-s
Human
phosphodiesterase 4C
PDE4D
icon_0140_ls_gen_dna_rna-s
Human
phosphodiesterase 4D
PDE5A
icon_0140_ls_gen_dna_rna-s
Human
phosphodiesterase 5A
PDIA3
icon_0140_ls_gen_dna_rna-s
Human
protein disulfide isomerase family A member 3
PLCB1
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Human
phospholipase C beta 1
PLCB2
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Human
phospholipase C beta 2
PLCB3
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Human
phospholipase C beta 3
PLCB4
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Human
phospholipase C beta 4
PLCD1
icon_0140_ls_gen_dna_rna-s
Human
phospholipase C delta 1
PLCD3
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Human
phospholipase C delta 3
PLCD4
icon_0140_ls_gen_dna_rna-s
Human
phospholipase C delta 4
PLCE1
icon_0140_ls_gen_dna_rna-s
Human
phospholipase C epsilon 1
PLCG1
icon_0140_ls_gen_dna_rna-s
Human
phospholipase C gamma 1
PLCG2
icon_0140_ls_gen_dna_rna-s
Human
phospholipase C gamma 2
PLCH1
icon_0140_ls_gen_dna_rna-s
Human
phospholipase C eta 1
PLCH2
icon_0140_ls_gen_dna_rna-s
Human
phospholipase C eta 2
PLCL1
icon_0140_ls_gen_dna_rna-s
Human
phospholipase C like 1 (inactive)
PLCL2
icon_0140_ls_gen_dna_rna-s
Human
phospholipase C like 2
PLCZ1
icon_0140_ls_gen_dna_rna-s
Human
phospholipase C zeta 1
PPP1CB
icon_0140_ls_gen_dna_rna-s
Human
protein phosphatase 1 catalytic subunit beta
PPP1R12A
icon_0140_ls_gen_dna_rna-s
Human
protein phosphatase 1 regulatory subunit 12A
PPP1R12B
icon_0140_ls_gen_dna_rna-s
Human
protein phosphatase 1 regulatory subunit 12B
PRKACA
icon_0140_ls_gen_dna_rna-s
Human
protein kinase cAMP-activated catalytic subunit alpha
PRKACB
icon_0140_ls_gen_dna_rna-s
Human
protein kinase cAMP-activated catalytic subunit beta
PRKACG
icon_0140_ls_gen_dna_rna-s
Human
protein kinase cAMP-activated catalytic subunit gamma
PRKAG1
icon_0140_ls_gen_dna_rna-s
Human
protein kinase AMP-activated non-catalytic subunit gamma 1
PRKAG2
icon_0140_ls_gen_dna_rna-s
Human
protein kinase AMP-activated non-catalytic subunit gamma 2
PRKAR1A
icon_0140_ls_gen_dna_rna-s
Human
protein kinase cAMP-dependent type I regulatory subunit alpha
PRKAR1B
icon_0140_ls_gen_dna_rna-s
Human
protein kinase cAMP-dependent type I regulatory subunit beta
PRKAR2A
icon_0140_ls_gen_dna_rna-s
Human
protein kinase cAMP-dependent type II regulatory subunit alpha
PRKAR2B
icon_0140_ls_gen_dna_rna-s
Human
protein kinase cAMP-dependent type II regulatory subunit beta
PRKG1
icon_0140_ls_gen_dna_rna-s
Human
protein kinase cGMP-dependent 1
PRKG2
icon_0140_ls_gen_dna_rna-s
Human
protein kinase cGMP-dependent 2
SLC4A10
icon_0140_ls_gen_dna_rna-s
Human
solute carrier family 4 member 10
SLC4A11
icon_0140_ls_gen_dna_rna-s
Human
solute carrier family 4 member 11
SLC4A5
icon_0140_ls_gen_dna_rna-s
Human
solute carrier family 4 member 5

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