Javascript must be enabled to continue!
Effect of Na+ Flow on Cd2+ Block of Tetrodotoxin-resistant Na+ Channels
View through CrossRef
Tetrodotoxin-resistant (TTX-R) Na+ channels are 1,000-fold less sensitive to TTX than TTX-sensitive (TTX-S) Na+ channels. On the other hand, TTX-R channels are much more susceptible to external Cd2+ block than TTX-S channels. A cysteine (or serine) residue situated just next to the aspartate residue of the presumable selectivity filter “DEKA” ring of the TTX-R channel has been identified as the key ligand determining the binding affinity of both TTX and Cd2+. In this study we demonstrate that the binding affinity of Cd2+ to the TTX-R channels in neurons from dorsal root ganglia has little intrinsic voltage dependence, but is significantly influenced by the direction of Na+ current flow. In the presence of inward Na+ current, the apparent dissociation constant of Cd2+ (∼200 μM) is ∼9 times smaller than that in the presence of outward Na+ current. The Na+ flow–dependent binding affinity change of Cd2+ block is true no matter whether the direction of Na+ current is secured by asymmetrical chemical gradient (e.g., 150 mM Na+ vs. 150 mM Cs+ on different sides of the membrane, 0 mV) or by asymmetrical electrical gradient (e.g., 150 mM Na+ on both sides of the membrane, −20 mV vs. 20 mV). These findings suggest that Cd2+ is a pore blocker of TTX-R channels with its binding site located in a multiion, single-file region near the external pore mouth. Quantitative analysis of the flow dependence with the flux-coupling equation reveals that at least two Na+ ions coexist with the blocking Cd2+ ion in this pore region in the presence of 150 mM ambient Na+. Thus, the selectivity filter of the TTX-R Na+ channels in dorsal root ganglion neurons might be located in or close to a multiion single-file pore segment connected externally to a wide vestibule, a molecular feature probably shared by other voltage-gated cationic channels, such as some Ca2+ and K+ channels.
Rockefeller University Press
Title: Effect of Na+ Flow on Cd2+ Block of Tetrodotoxin-resistant Na+ Channels
Description:
Tetrodotoxin-resistant (TTX-R) Na+ channels are 1,000-fold less sensitive to TTX than TTX-sensitive (TTX-S) Na+ channels.
On the other hand, TTX-R channels are much more susceptible to external Cd2+ block than TTX-S channels.
A cysteine (or serine) residue situated just next to the aspartate residue of the presumable selectivity filter “DEKA” ring of the TTX-R channel has been identified as the key ligand determining the binding affinity of both TTX and Cd2+.
In this study we demonstrate that the binding affinity of Cd2+ to the TTX-R channels in neurons from dorsal root ganglia has little intrinsic voltage dependence, but is significantly influenced by the direction of Na+ current flow.
In the presence of inward Na+ current, the apparent dissociation constant of Cd2+ (∼200 μM) is ∼9 times smaller than that in the presence of outward Na+ current.
The Na+ flow–dependent binding affinity change of Cd2+ block is true no matter whether the direction of Na+ current is secured by asymmetrical chemical gradient (e.
g.
, 150 mM Na+ vs.
150 mM Cs+ on different sides of the membrane, 0 mV) or by asymmetrical electrical gradient (e.
g.
, 150 mM Na+ on both sides of the membrane, −20 mV vs.
20 mV).
These findings suggest that Cd2+ is a pore blocker of TTX-R channels with its binding site located in a multiion, single-file region near the external pore mouth.
Quantitative analysis of the flow dependence with the flux-coupling equation reveals that at least two Na+ ions coexist with the blocking Cd2+ ion in this pore region in the presence of 150 mM ambient Na+.
Thus, the selectivity filter of the TTX-R Na+ channels in dorsal root ganglion neurons might be located in or close to a multiion single-file pore segment connected externally to a wide vestibule, a molecular feature probably shared by other voltage-gated cationic channels, such as some Ca2+ and K+ channels.
Related Results
DETERMINAÇÃO SIMULTÂNEA DE METAIS EM GASOLINA, ATRAVÉS DE MÉTODO ELETROANALÍTICO ALTERNATIVO, COM O USO DE CALIBRAÇÃO MULTIVARIADA / REDES NEURAIS
DETERMINAÇÃO SIMULTÂNEA DE METAIS EM GASOLINA, ATRAVÉS DE MÉTODO ELETROANALÍTICO ALTERNATIVO, COM O USO DE CALIBRAÇÃO MULTIVARIADA / REDES NEURAIS
Devido a complexidade de amostras como a gasolina, a utilização de microemulsões, bem como de estratégias de calibração multivariada tem sido cada vez maior. Este trabalho apresent...
Biosorptio Of Cd2+ By Wildtype And Cadmium Resistant, CdR-99 Cell Line Of Chlorella Vulgaris
Biosorptio Of Cd2+ By Wildtype And Cadmium Resistant, CdR-99 Cell Line Of Chlorella Vulgaris
Removal of heavy metals is very important in wastewater treatment process, due to their toxic effects on the environment. Biological treatment has attracted researchers for years s...
Unraveling Cd2+ Adsorption Mechanisms on Biotite: Effects of Coexisting Pb2+, Zn2+ and Humic Acid via Batch and Spectroscopic Studies
Unraveling Cd2+ Adsorption Mechanisms on Biotite: Effects of Coexisting Pb2+, Zn2+ and Humic Acid via Batch and Spectroscopic Studies
Understanding the molecular mechanisms of cadmium (Cd) adsorption at the soil-water interface is critical for addressing severe mining areas Cd pollution. This study systematically...
Cadmium‐induced Cytosolic Ca2+ Elevation and Subsequent Apoptosis in Renal Tubular Cells
Cadmium‐induced Cytosolic Ca2+ Elevation and Subsequent Apoptosis in Renal Tubular Cells
Abstract: Cadmium (Cd2+) is an industrial and environmental metal. The effect of Cd2+ on intracellular free‐Ca2+ levels ([Ca2+]i) and viability in Madin Darby canine kidney cells w...
Toxicity of single and ternary mixtures of heavy metals and 2,4-dichlorophenoxyacetic acid to Chlorella vulgaris alkaline phosphatase activity
Toxicity of single and ternary mixtures of heavy metals and 2,4-dichlorophenoxyacetic acid to Chlorella vulgaris alkaline phosphatase activity
The influence of mixtures of metals and pesticide on the activity of algal hydrolytic enzyme alkaline phosphatase was investigated. Toxicity of unary and ternary combinations of Co...
Isolation of cadmium-resistant strains and preliminary study of their resistance mechanism
Isolation of cadmium-resistant strains and preliminary study of their resistance mechanism
Abstract
Six cadmium (Cd)-resistant strains, Cd-1, Cd-2, Cd-3, Cd-5, Cd-6, and Cd-7, were isolated. Cd-1, Cd-2, Cd-5, and Cd-6 were identified as Stenotrophomonas sp., Cd-3...
Experimental and Numerical Analysis of the Flow Field in the Integrated Valve for the Control Rod Hydraulic Drive System
Experimental and Numerical Analysis of the Flow Field in the Integrated Valve for the Control Rod Hydraulic Drive System
Control Rod Hydraulic Drive System (CRHDS) is a new type of built-in control rod drive technology, and the Integrated Valve (IV) is the key control component of it. The pulse water...
Selective cadmium fluorescence probe based on bis-heterocyclic molecule and its imaging in cells
Selective cadmium fluorescence probe based on bis-heterocyclic molecule and its imaging in cells
Abstract
Fluorescence probes that selectively image cadmium are useful for detecting and tracking the amount of Cd2+ in cells and tissues. In this study, we designed and sy...

