Target intelligence / Profile preview

Cyclic nucleotide-gated cation channel alpha-2 (CNGA2)

Target
CNGA2
Molecular classification
Ion channel, Cyclic nucleotide-gated channel family, Cation channel
01

Overview

Cyclic nucleotide-gated cation channel alpha-2 (CNGA2) is a vital protein in the olfactory signal transduction pathway, primarily localized in the cilia of olfactory sensory neurons [1][2]. It functions as a non-selective cation channel that opens in response to increased intracellular levels of cAMP, which is produced when odorant molecules activate G protein-coupled odorant receptors [3]. The resulting influx of sodium and calcium ions depolarizes the neuron, triggering action potentials that transmit smell information to the brain [1][4]. Beyond its fundamental role in olfaction, CNGA2 is a key model for understanding how cyclic nucleotides regulate ion channel gating and sensory perception [2]. Mutations in the CNGA2 gene are directly linked to anosmia (the loss of the sense of smell), emphasizing its necessity for sensory function [5]. While pharmacological targeting of CNGA2 is currently focused on experimental tools like L-cis-diltiazem, it remains a significant target for research into sensory disorders and potential regenerative therapies for olfactory loss [4][6]. References: [1] UniProt Consortium. (2023). UniProtKB - Q16280 (CNGA2_HUMAN). [2] Pifferi, S., et al. (2006). "The cyclic nucleotide-gated channel of olfactory sensory neurons." Flavour and Fragrance Journal. [3] Kleene, S. J. (2008). "The electrochemical basis of odor transduction." Chemical Senses. [4] Bradley, J., et al. (2005). "The cyclic nucleotide-gated channels of the olfactory system." Chemical Senses. [5] Sailani, M. R., et al. (2017). "Isolated congenital anosmia and CNGA2 mutations." Scientific Reports. [6] Haynes, L. W. (1992). "Block of the cyclic GMP-activated channel of vertebrate rod and cone photoreceptors by l-cis-diltiazem." Visual Neuroscience.

Other names
CNG channel alpha-2Olfactory cyclic nucleotide-gated channel alpha subunitCNCACNCG2CNG2Cyclic nucleotide-gated channel alpha 2
02

Mechanism of action

Binding of cyclic nucleotides (cAMP or cGMP) to the intracellular C-terminal domain induces a conformational change that opens the ion-conducting pore, permitting the influx of sodium and calcium ions.

03

Biological functions

Sensory transductionSignal transductionOlfactionIon transportCiliary signaling
04

Disease associations

AnosmiaOlfactory dysfunctionHyposmia
05

Safety considerations

Sensory loss (permanent anosmia)Potential off-target effects in the central nervous systemCross-reactivity with retinal CNG channels leading to visual disturbancesPotential cardiovascular side effects due to similarities with other cation channels
06

Interacting drugs

L-cis-diltiazem

5 more in the full profile.

07

Biomarkers

Olfactory threshold scoreCNGA2 gene mutation analysisElectro-olfactogram (EOG) response

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