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saclofen

Structure via PubChem · Public domain (PubChem)

EntityQ7396879· pop 7· linked from 194 articles

Saclofen is a competitive antagonist for the GABAB receptor. This drug is an analogue of the GABAB agonist baclofen. The GABAB receptor is heptahelical receptor, expressed as an obligate heterodimer, which couples to the Gi/o class of heterotrimeric G-proteins. The action of saclofen on the central nervous system is understandably modest, because G-proteins rely on an enzyme cascade to alter cell behavior while ionotropic receptors immediately change the ionic permeability of the neuronal plasma membrane, thus changing its firing patterns. These particular receptors, presynaptically inhibit N-

Chemical data

Formula
C9H12ClNO3S
Molecular weight
249.72 g/mol
IUPAC name
3-amino-2-(4-chlorophenyl)propane-1-sulfonic acid
SMILES
C1=CC(=CC=C1C(CN)CS(=O)(=O)O)Cl
InChIKey
JYLNVJYYQQXNEK-UHFFFAOYSA-N
XLogP
-1.7
Polar surface area
88.8 Ų
H-bond donors
2
H-bond acceptors
4
Formal charge
0

via PubChem

Drug data · ChEMBL

Molecule type
Small molecule

via ChEMBL · EBI

Research

359 papers

via PubMed

Wikidata facts

Mass
249.022642
Show 3 more facts
chemical formula
C₉H₁₂ClNO₃S
canonical SMILES
C1=CC(=CC=C1C(CN)CS(=O)(=O)O)Cl
Commons category
Saclofen
Sources (2)

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Encyclopedic overview

1 sections
Contents
  • References

Saclofen is a competitive antagonist for the GABAB receptor. This drug is an analogue of the GABAB agonist baclofen. The GABAB receptor is heptahelical receptor, expressed as an obligate heterodimer, which couples to the Gi/o class of heterotrimeric G-proteins. The action of saclofen on the central nervous system is understandably modest, because G-proteins rely on an enzyme cascade to alter cell behavior while ionotropic receptors immediately change the ionic permeability of the neuronal plasma membrane, thus changing its firing patterns. These particular receptors, presynaptically inhibit N- and P/Q- voltage-gated calcium channels (VGCCs) via a direct interaction of the dissociated beta gamma subunit of the g-protein with the intracellular loop between the 1st and 2nd domain of the VGCC's alpha-subunit; postsynaptically, these potentiate Kir currents. Both result in inhibitory effects.

However, in animal experiments, saclofen is paradoxically observed to have an antiepileptic effect. This is probably because GABAB effect is coupled to excitation in the thalamo-cortical circuits — Kir coupling via Gβγ subunits is so strong that it lowers the threshold for T-type Ca2+ channel opening enough to elicit their opening, and thus an excitation in this circuit. Since thalamo-cortical circuit overfiring is seen in types of epilepsy involving absence seizures (ethosuximide, a T-type Ca2+ channel blocker, is used in the treatment of this), the unexpected antiepileptic effects of saclofen may thus be explained (unexpected as the GABA receptors are inhibitory, and antagonizing them should lead to hyperactivity of the affected neurons). Possible therapeutic uses of saclofen are currently being researched.

Excerpted from Wikipedia’s “saclofen” article, available under the CC BY-SA 4.0 licence.

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