The Primary Information of Inward-rectifier Potassium Channel
1. Summary
Inward-rectifier potassium channels (Kir, IRK) are a specific lipid-gated subset of potassium channel [1]. There are seven subfamilies of Kir channels, denoted as Kir1 – Kir7, Each subfamily has multiple members (Kir1.1, Kir2.1-Kir2.4, Kir3.1-Kir3.4, Kir4.1-Kir4.2, Kir5.1, Kir6.1-Kir6.2, Kir7.1) that have nearly identical amino acid sequences across known mammalian species [2].
Kir channels are formed from as homotetrameric membrane proteins. Each of the four identical protein subunits is composed of two membrane-spanning alpha helices (M1 and M2). Heterotetramers can form between members of the same subfamily (i.e. Kir2.1 and Kir2.3) when the channels are overexpressed [1].
2. Binding Sites
Inhibitor
Cholesterol-binding sites in GIRK channels were located in the same regions as in Kir2.1, the principal cholesterol-binding pocket in these 2 GIRK channels was located at the center of the transmembrane domain [3]. A second putative cholesterol-binding site was also identified in GIRK2 in the transmembrane domain close to its interface with the cytosolic domain at a similar location to the transient binding site in Kir2.1 [4]. Site-directed mutagenesis and patch-clamp electrophysiology were used to identify Val168 or Asn171 in the upper site, which are unique to ROMK within the Kir channel family, led to a dramatic reduction in VU591 sensitivity [5].
Yellow: Site-directed mutagenesis of Kir7.1 channel pore-lining amino acid residues identified Glutamate 149 and Alanine 150 as essential determinants of VU714 activity [6].
Blocker
VU6036720 inhibits Kir4.1/5.1 activity through a reduction of channel open-state probability and single-channel current amplitude. Elevating extracellular potassium ion by 20 mM shifted the IC50 6.8-fold, suggesting that VU6036720 is a pore blocker that binds in the ion-conduction pathway [11]. Green: Mutation of the "rectification controller" asparagine 161 (N161) to glutamate (Kir4.1/Kir5.1), which is equivalent to small-molecule binding sites in other Kir channels, led to a strong reduction of inhibition [11]. ML418 is sub-micromolar pore blocker of Kir7.1 potassium channel [12].
Activator
CL-705G is a novel chemical Kir6.2-specific KATP channel opener, it activated Kir6.2Δ36 in the presence of SUR2A, but not when expressed by itself. Further, three amino acids, I296, T294, and v291 in the C-linker domain of Kir6.2 were found critical for forming the binding pocket [7]. Mutation of the "rectification controller" asparagine 161 (N161) to glutamate (Kir4.1/Kir5.1), which is equivalent to small-molecule binding sites in other Kir channels, led to a strong reduction of inhibition [8]. Terfenadine: It acts as a slow channel blocker on Kir6.2Δ26 channels. Terfenadine-induced block of Kir6.2Δ26 channels demonstrated no marked voltage dependence, but lowering the intracellular pH to 6.5 potentiated the inhibition of Kir6.2Δ26 channels by terfenadine [9]. Diverse compounds exist that can either inhibit (block) or activate (open) KATP channel activity. The vast majority of KATP channel activators and blockers act by binding to the SURx subunit [10].
Allosteric
The structure of hKir6.2 (C166S, G334D) has an open pore. The radius of the ion pathway at the inner helix gate is ~3.3 Å compared to ~1.0 Å in hKir6.2 (WT). Expansion of the ion pathway is associated with rotation of the L164 and F168 side chains and modest conformational changes within the intracellular half of the inner and outer helices [13].
3. Target List
| ICDB_Pro ID | Protein Name | Organism | Uniport Accession Number | Gene Name |
|---|---|---|---|---|
| ICDB_Pro_0171 | G protein-activated inward rectifier potassium channel 4 | Sus scrofa (Pig) | O02670 | KCNJ5 |
| ICDB_Pro_0554 | G protein-activated inward rectifier potassium channel 4 | Homo sapiens (Human) | P48544 | KCNJ5;GIRK4 |
| ICDB_Pro_0555 | G protein-activated inward rectifier potassium channel 4 | Mus musculus (Mouse) | P48545 | Kcnj5;Girk4 |
| ICDB_Pro_0557 | G protein-activated inward rectifier potassium channel 4 | Rattus norvegicus (Rat) | P48548 | Kcnj5;Girk4 |
| ICDB_Pro_0235 | Inward rectifier potassium channel 13 | Homo sapiens (Human) | O60928 | KCNJ13 |
| ICDB_Pro_0253 | Inward rectifier potassium channel 13 | Rattus norvegicus (Rat) | O70617 | Kcnj13 |
| ICDB_Pro_0708 | Inward rectifier potassium channel 13 | Mus musculus (Mouse) | P86046 | Kcnj13 |
| ICDB_Pro_1610 | Inward rectifier potassium channel 13 | Cavia porcellus (Guinea pig) | Q9QZ65 | KCNJ13 |
| ICDB_Pro_0605 | Inward rectifier potassium channel 16 | Rattus norvegicus (Rat) | P52191 | Kcnj16 |
| ICDB_Pro_1580 | Inward rectifier potassium channel 16 | Homo sapiens (Human) | Q9NPI9 | KCNJ16 |