From Surf Wiki (app.surf) — the open knowledge base
Lq2
Lq2 is a component of the venom of the scorpion Leiurus quinquestriatus. It blocks various potassium channels, among others the inward-rectifier potassium ion channel ROMK1.

Alternative names
Lq2 is also known as Potassium channel toxin alpha-KTx 1.2, Charybdotoxin-2, ChTX-Lq2, ChTx-d, Toxin 18-2 or Lqh 18-2.
Etymology
The name Lq2 refers to the name of the animal species in which the toxin can be found. Lq2 can be found in the scorpion Leiurus quinquestriatus (Lq). Lq2 is structurally similar to Lq1, which had been found previously and which is also a potassium channel blocker.
Sources
Lq2 is a component of the venom of the scorpion Leiurus quinquestriatus, known under various names, for example the deathstalker, the Israeli desert scorpion or the yellow scorpion.
Structure
Lq2 is a small peptide of 37 amino acids. Lq2 contains the classical scorpion toxin alpha-beta scaffold and is structurally similar to the neurotoxin Charybdotoxin (CTX). Lq2 consists of an α-helix and a β-sheet, connected by an αβ3 loop containing disulfide bridges. The proteins three-dimensional structure has been reconstructed using nuclear magnetic resonance techniques.
Target
Lq2 interacts with all three types of potassium channels: the voltage-activated, the Ca2+- activated and the inward-rectifier potassium channels. The unique trait of Lq2 is its high affinity for certain inward-rectifier potassium ion channels, especially the Renal Outer Medullary Potassium channel ROMK1. This ion channel contributes to the regulation of the resting membrane potential.
Mode of action
Since all potassium channels share the same ion conducting outer pore structure, Lq2 binds to all three potassium channel types. Lq2 interacts with the T-X-X-T-X-GT-X-X-T-X-GY/F-Gt K+-selective section within the pore-forming region (P-region) of the ROMK1 ion channel. It blocks the channel, binding in a 1:1 stoichiometric ratio with its β-sheet.
Therapeutic use
Potential use of Lq2 is mainly in cardiovascular diseases.
References
References
- (December 2005). "International Union of Pharmacology. LIV. Nomenclature and molecular relationships of inwardly rectifying potassium channels". [[Pharmacological Reviews]].
- (February 2007). "Voltage-gated ion channels and gating modifier toxins". Toxicon.
- (April 2001). "Brownian dynamics simulations of interaction between scorpion toxin Lq2 and potassium ion channel". Biophysical Journal.
- (April 1998). "Structural conservation in prokaryotic and eukaryotic potassium channels". Science.
- (March 1999). "Solution structure of potassium channel-inhibiting scorpion toxin Lq2". Proteins.
- (February 1997). "Inwardly rectifying potassium channels: their molecular heterogeneity and function". The Japanese Journal of Physiology.
- (February 2003). "Kir channels in the CNS: emerging new roles and implications for neurological diseases". Cell and Tissue Research.
- (June 1997). "Purification, characterization, and synthesis of an inward-rectifier K+ channel inhibitor from scorpion venom". Biochemistry.
This article was imported from Wikipedia and is available under the Creative Commons Attribution-ShareAlike 4.0 License. Content has been adapted to SurfDoc format. Original contributors can be found on the article history page.
Ask Mako anything about Lq2 — get instant answers, deeper analysis, and related topics.
Research with MakoFree with your Surf account
Create a free account to save articles, ask Mako questions, and organize your research.
Sign up freeThis content may have been generated or modified by AI. CloudSurf Software LLC is not responsible for the accuracy, completeness, or reliability of AI-generated content. Always verify important information from primary sources.
Report