Membrane Transporter/Ion Channel


Membrane Transporters mediate the movement of ions and molecules via binding and moving the substance across the membrane. There are two main actions of transporter: facilitated diffusion (passive transport) and active transport. Membrane transporters which bind the hydrolysis of ATP to the transport of target molecules are referred to as ATPases. For instance, Na+,K+-ATPases or Na+,K+-pumps are responsible for the transport of Na+ out of and K+ into cells.
Ion channels are pore-forming membrane proteins which allow the flow of ions across the membrane. The ion channels can be broadly grouped into six families including calcium channels, chloride channels, potassium channels, sodium channels, gap junction proteins and porins. Not all ion channels are gated, such as certain type of K+ and Cl– channels, transient receptor potential superfamily of cation channels, the ryanodine receptors and the IP3 receptors, but most Na+, K+, Ca2+ and some Cl– channels are all gated by voltage. Ligand-gated channels are regulated in response to ligand binding (e.g. neurotransmitters signaling). These ligand-gated neurotransmitter receptors are known as ionotropic receptors. Various neurotransmitters couple to ionotropic receptors such as glutamate, acetylcholine, glycine, GABA, and serotonin.
-
C6437 Camphor -
C6540 Ethosuximide -
C6622 6-Methylflavone -
C6638 Idramantone -
B6102 NS 11394Summary: GABA(A) receptor-positive modulator -
B6140 HexachloropheneSummary: KCNQ1/KCNE1 potassium channel activator -
C3137 Enniatin BSummary: ionophore with some capacity to facilitate import of K+ and Na+ across membranes -
C3140 Rhodamine 123 (chloride)Summary: membrane-permeable cationic dye used as substrate for the efflux pump P-glycoprotein -
C3205 LanicemineSummary: voltage-dependent NMDA channel blocker -
C3410 Oligomycin CSummary: mitochondrial F1FO-ATP synthase inhibitor

