Target intelligence / Profile preview

ATP-sensitive potassium channel regulatory subunit (Sulfonylurea receptor, SUR) (SUR)

Target
SUR
Molecular classification
Regulator subunit of an ion channel (specifically, ATP-sensitive potassium channel), ATP-binding cassette (ABC) transporter superfamily subunit
01

Overview

The ATP-sensitive potassium channel regulatory subunit (Sulfonylurea receptor, SUR) is a key component of the ATP-sensitive potassium channel (KATP) complex. KATP channels are hetero-octameric complexes composed of four pore-forming Kir6.x subunits and four regulatory SUR subunits, which belong to the ATP-binding cassette (ABC) transporter superfamily[2][4]. SUR subunits do not form the ion-conducting pore themselves; instead, they regulate the activity of the channel in response to intracellular ATP and ADP, thereby linking cellular metabolic status to electrical excitability[1][3]. Different SUR isoforms (SUR1, SUR2A, SUR2B) combine with Kir6.1 or Kir6.2 to form channels with distinct tissue distributions and pharmacological properties[4]. SUR1 is predominantly found in pancreatic β-cells, where its inhibition by sulfonylurea drugs stimulates insulin secretion[2][5]. SUR2 isoforms are prevalent in cardiac, skeletal, and smooth muscle, where they participate in the regulation of vascular tone and cardiac protection during ischemia[3][4]. Mutations in SUR subunits can lead to metabolic disorders, emphasizing their importance as both physiological regulators and therapeutic targets[2][4]. The SUR subunit is unique among ABC proteins in that it regulates, rather than transports, an ion channel[2].

Other names
Sulfonylurea receptorSUR1SUR2SUR2ASUR2BABC transporterATP-binding cassette transporterKATP channel regulatory subunit
02

Mechanism of action

Sulfonylureas bind to SUR subunits, promoting KATP channel closure and increasing insulin secretion; KATP channel openers bind to SUR and promote channel opening, leading to relaxation of vascular smooth muscle and reduced insulin secretion[1][5]. The regulatory subunit (SUR) undergoes Mg-nucleotide-dependent conformational changes that modulate channel activity in response to ADP[2][5].

03

Biological functions

Coupling of cellular metabolic state (ATP/ADP ratio) to membrane electrical activityregulation of insulin secretioncontrol of vascular smooth muscle tonemodulation of neuronal and muscle excitabilityprotection against metabolic stress (e.g., ischemia, hypoxia)
04

Disease associations

Cardiovascular disease (via vascular smooth muscle KATP channels)diabetes (pancreatic β-cell KATP channels)congenital hyperinsulinism (loss-of-function mutations)neonatal diabetes (gain-of-function mutations)
05

Safety considerations

Hypoglycemia with sulfonylureashyperglycemia or insulin secretion failure with channel openersrisk of arrhythmias in cardiac musclegenetic variability in drug response due to SUR subunit isoform differences
06

Interacting drugs

Sulfonylureas (e.g., glibenclamide, tolbutamide)

2 more in the full profile.

07

Biomarkers

Circulating glucose and insulin levels (for pancreatic KATP)vascular tone and blood pressure (for vascular smooth muscle KATP)genetic testing for SUR1 mutations in congenital hyperinsulinism

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