Javascript must be enabled to continue!
A Novel Missense Mutation Causing a G487R Substitution in the S2–S3 Loop of Human ether‐à‐go‐go‐Related Gene Channel
View through CrossRef
hERG(G487R) Channel. Introduction: Mutations of human ether‐à‐go‐go‐related gene (hERG), which encodes a cardiac K+ channel responsible for the acceleration of the repolarizing phase of an action potential and the prevention of premature action potential regeneration, often cause severe arrhythmic disorders. We found a novel missense mutation of hERG that results in a G487R substitution in the S2–S3 loop of the channel subunit [hERG(G487R)] from a family and determined whether this mutant gene could induce an abnormality in channel function.Methods and Results: We made whole‐cell voltage‐clamp recordings from HEK‐293T cells transfected with wild‐type hERG [hERG(WT)], hERG(G487R), or both. We measured hERG channel‐mediated current as the “tail” of a depolarization‐elicited current. The current density of the tail current and its voltage‐ and time‐dependences were not different among all the cell groups. The time‐courses of deactivation, inactivation, and recovery from inactivation and their voltage‐dependences were not different among all the cell groups. Furthermore, we performed immunocytochemical analysis using an anti‐hERG subunit antibody. The ratio of the immunoreactivity of the plasma membrane to that of the cytoplasm was not different between cells transfected with hERG(WT), hERG(G487R), or both.Conclusion: hERG(G487R) can produce functional channels with normal gating kinetics and cell‐surface expression efficiency with or without the aid of hERG(WT). Therefore, neither the heterozygous nor homozygous inheritance of hERG(G487R) is thought to cause severe cardiac disorders. hERG(G487R) would be a candidate for a rare variant or polymorphism of hERG with an amino acid substitution in the unusual region of the channel subunit. (J Cardiovasc Electrophysiol, Vol. 23, pp. 1246–1253, November 2012)
Title: A Novel Missense Mutation Causing a G487R Substitution in the S2–S3 Loop of Human ether‐à‐go‐go‐Related Gene Channel
Description:
hERG(G487R) Channel.
Introduction: Mutations of human ether‐à‐go‐go‐related gene (hERG), which encodes a cardiac K+ channel responsible for the acceleration of the repolarizing phase of an action potential and the prevention of premature action potential regeneration, often cause severe arrhythmic disorders.
We found a novel missense mutation of hERG that results in a G487R substitution in the S2–S3 loop of the channel subunit [hERG(G487R)] from a family and determined whether this mutant gene could induce an abnormality in channel function.
Methods and Results: We made whole‐cell voltage‐clamp recordings from HEK‐293T cells transfected with wild‐type hERG [hERG(WT)], hERG(G487R), or both.
We measured hERG channel‐mediated current as the “tail” of a depolarization‐elicited current.
The current density of the tail current and its voltage‐ and time‐dependences were not different among all the cell groups.
The time‐courses of deactivation, inactivation, and recovery from inactivation and their voltage‐dependences were not different among all the cell groups.
Furthermore, we performed immunocytochemical analysis using an anti‐hERG subunit antibody.
The ratio of the immunoreactivity of the plasma membrane to that of the cytoplasm was not different between cells transfected with hERG(WT), hERG(G487R), or both.
Conclusion: hERG(G487R) can produce functional channels with normal gating kinetics and cell‐surface expression efficiency with or without the aid of hERG(WT).
Therefore, neither the heterozygous nor homozygous inheritance of hERG(G487R) is thought to cause severe cardiac disorders.
hERG(G487R) would be a candidate for a rare variant or polymorphism of hERG with an amino acid substitution in the unusual region of the channel subunit.
(J Cardiovasc Electrophysiol, Vol.
23, pp.
1246–1253, November 2012).
Related Results
En skvatmølle i Ljørring
En skvatmølle i Ljørring
A Horizontal Mill at Ljørring, Jutland.Horizontal water-mills have been in use in Jutland since the beginning of the Christian era 2). But the one here described shows so close a c...
CEBPA Gene Different Mutants Play Distinct Impacts On Tumor Suppressor Function Of C/EBP-Alpha and Bone Marrow Stromal Cells
CEBPA Gene Different Mutants Play Distinct Impacts On Tumor Suppressor Function Of C/EBP-Alpha and Bone Marrow Stromal Cells
Abstract
Introduction
CEBPA gene encodes CCAAT/enhancer-binding protein-alpha (C/EBPα), a crucial granulocytic differentiation f...
Leveraging cancer mutation data to predict the pathogenicity of germline missense variants
Leveraging cancer mutation data to predict the pathogenicity of germline missense variants
ABSTRACTInnovative and easy-to-implement strategies are needed to improve the pathogenicity assessment of rare germline missense variants. Somatic cancer driver mutations identifie...
JAK2 Mutation in Granulocytes and Platelets and X-Chromosome Gene-Based Clonal Analysis in Chronic Myeloproliferative Disorders.
JAK2 Mutation in Granulocytes and Platelets and X-Chromosome Gene-Based Clonal Analysis in Chronic Myeloproliferative Disorders.
Abstract
BCR/ABL-negative chronic myeloproliferative disorders (CMPDs) are considered to arise in a pluripotent progenitor cell. High prevalence of a point mutation ...
Marfan syndrome: genetic variant determinants of cardiovascular outcomes
Marfan syndrome: genetic variant determinants of cardiovascular outcomes
Abstract
Background
Marfan syndrome is a systemic connective tissue disorder caused by genetic variants in the fibrillin-1 (FBN1...
Relationships of BRAF V600E Gene Mutation With Some Immunohistochemical Markers and Recurrence Rate in Patients With Thyroid Carcinoma
Relationships of BRAF V600E Gene Mutation With Some Immunohistochemical Markers and Recurrence Rate in Patients With Thyroid Carcinoma
Background:
The B-type rafkinase (BRAF) V600E gene mutation plays an important role in the pathogenesis, diagnosis, and prognosis of thyroid carcinoma. This stu...
<strong>Novel</strong> <strong>Missense</strong><strong> Mutation</strong> <strong>in Ligand-Binding Domain of AR Gene Identified in Patient with Androgen Insensitivity Syndrome</strong> <strong>from U
<strong>Novel</strong> <strong>Missense</strong><strong> Mutation</strong> <strong>in Ligand-Binding Domain of AR Gene Identified in Patient with Androgen Insensitivity Syndrome</strong> <strong>from U
Androgen insensitivity syndrome (AIS) is the most common disorder of sex development in people with karyotype 46,XY. Mutations in AR (androgen receptor) gene are found in most indi...
Molecular Genetics of Hereditary Prothrombin Deficiency in Indian Patients: Identification of a Novel Ala362→Thr (Prothrombin Vellore 1) Mutation by Conformation Sensitive Gel Electrophoresis.
Molecular Genetics of Hereditary Prothrombin Deficiency in Indian Patients: Identification of a Novel Ala362→Thr (Prothrombin Vellore 1) Mutation by Conformation Sensitive Gel Electrophoresis.
Abstract
Prothrombin deficiency is a rare (1:200000) autosomal recessive disorder caused by diverse mutations in prothrombin gene. We have studied the molecular basi...

