Potassium Channels in Health and Disease

Potassium Channels in Health and Disease
Author: Hiroaki Kume
Publisher:
Total Pages:
Release: 2017
Genre: SCIENCE
ISBN: 9781536129281

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"Potassium ion (K+) channels are ubiquitous components and are widely distributed on the surface of the cell membrane in various tissues. There are many types of potassium ion channels (voltage-gated K+ channels, ATP-sensitive K+ channels, Ca2+-activated K+ channels, etc.), and each type of potassium ion channel has its own characteristic features concerning electrophysiology and molecular biology in each potassium ion channel. The potassium ion current across the plasma membrane is considered to have two main physiological functions, one for determining the membrane potential and the other regulating the electrical activity. Membrane hyperpolarization would reduce the excitability of the membrane by shifting the membrane potential away from the threshold for excitation and would inhibit, where it existed, calcium ion (Ca2+) influx through voltage-gated Ca2+ channels by closing the Ca2+ channel. Outward potassium ion currents activated upon depolarization would counteract the depolarizing action of inward currents carried either by sodium ion (Na+) or Ca2+. Therefore, potassium ion channels show the physiological effects in each tissue via membrane potential mediated Ca2+ dynamics (for example, excitation-contraction coupling in muscle). Potassium ion channel activity is also essentially regulated by the intracellular signal transduction pathways, such as receptors' (G proteins) second messenger molecules processes in the physiological condition. On the other hand, the modification of potassium ion channel activity would be expected to have a significant effect on the excitability of various cells. Therefore, augmentation of outward potassium ion currents may be useful to treat various diseases (asthma, chronic pulmonary obstructive disease, hypertension, diabetes mellitus, glaucoma, arrhythmias, heart failure, epilepsy, etc.). Furthermore, potassium ion channels may be a target protein for the research and development of a therapeutic agent for various diseases concerning the lungs, heart, nerves, eyes, and pancreas. However, there are few books described in detail about potassium ion channels. This book will focus on the characteristics, function and regulation of several types of potassium ion channels, focusing on the role of these channels not only in terms of physical responses, but also in the aforementioned diseases."--

Potassium Channels in Health and Disease

Potassium Channels in Health and Disease
Author: Hiroaki Kume
Publisher: Nova Biomedical Books
Total Pages: 0
Release: 2017
Genre: SCIENCE
ISBN: 9781536129274

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Potassium ion (K+) channels are ubiquitous components and are widely distributed on the surface of the cell membrane in various tissues. There are many types of potassium ion channels (voltage-gated K+ channels, ATP-sensitive K+ channels, Ca2+-activated K+ channels, etc.), and each type of potassium ion channel has its own characteristic features concerning electrophysiology and molecular biology in each potassium ion channel. The potassium ion current across the plasma membrane is considered to have two main physiological functions, one for determining the membrane potential and the other regulating the electrical activity. Membrane hyperpolarization would reduce the excitability of the membrane by shifting the membrane potential away from the threshold for excitation and would inhibit, where it existed, calcium ion (Ca2+) influx through voltage-gated Ca2+ channels by closing the Ca2+ channel. Outward potassium ion currents activated upon depolarization would counteract the depolarizing action of inward currents carried either by sodium ion (Na+) or Ca2+. Therefore, potassium ion channels show the physiological effects in each tissue via membrane potential mediated Ca2+ dynamics (for example, excitation-contraction coupling in muscle). Potassium ion channel activity is also essentially regulated by the intracellular signal transduction pathways, such as receptors (G proteins) second messenger molecules processes in the physiological condition. On the other hand, the modification of potassium ion channel activity would be expected to have a significant effect on the excitability of various cells. Therefore, augmentation of outward potassium ion currents may be useful to treat various diseases (asthma, chronic pulmonary obstructive disease, hypertension, diabetes mellitus, glaucoma, arrhythmias, heart failure, epilepsy, etc.). Furthermore, potassium ion channels may be a target protein for the research and development of a therapeutic agent for various diseases concerning the lungs, heart, nerves, eyes, and pancreas. However, there are few books described in detail about potassium ion channels. This book will focus on the characteristics, function and regulation of several types of potassium ion channels, focusing on the role of these channels not only in terms of physical responses, but also in the aforementioned diseases.

Ion Channels and Disease

Ion Channels and Disease
Author: Frances M. Ashcroft
Publisher: Academic Press
Total Pages: 505
Release: 1999-10-20
Genre: Science
ISBN: 0080535216

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Ion channels are membrane proteins that act as gated pathways for the movement of ions across cell membranes. They play essential roles in the physiology of all cells. In recent years, an ever-increasing number of human and animal diseases have been found to result from defects in ion channel function. Most of these diseases arise from mutations in the genes encoding ion channel proteins, and they are now referred to as the channelopathies. Ion Channels and Disease provides an informative and up-to-date account of our present understanding of ion channels and the molecular basis of ion channel diseases. It includes a basic introduction to the relevant aspects of molecular biology and biophysics and a brief description of the principal methods used to study channelopathies. For each channel, the relationship between its molecular structure and its functional properties is discussed and ways in which genetic mutations produce the disease phenotype are considered. This book is intended for research workers and clinicians, as well as graduates and advanced undergraduates. The text is clear and lively and assumes little knowledge, yet it takes the reader to frontiers of what is currently known about this most exciting and medically important area of physiology. Introduces the relevant aspects of molecular biology and biophysics Describes the principal methods used to study channelopathies Considers single classes of ion channels with summaries of the physiological role, subunit composition, molecular structure and chromosomal location, plus the relationship between channel structure and function Looks at those diseases associated with defective channel structures and regulation, including mutations affecting channel function and to what extent this change in channel function can account for the clinical phenotype

Ion Channel Diseases

Ion Channel Diseases
Author:
Publisher: Academic Press
Total Pages: 168
Release: 2011-09-06
Genre: Science
ISBN: 0080923100

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Ion channel dysfunction in humans leads to impairment of the excitable processes necessary for the normal function of several tissues, such as muscle and brain. It follows that an increasing number of human diseases have been associated with malfunctioning ion channels, many of which have a genetic component. This volume of Advances in Genetics presents a broad and comprehensive overview of the inherited channelopathies in humans, including clinical, genetic and molecular aspects of these conditions. Keeping true to the scope of the serial, novel genomic and modeling research approaches and a review of potential therapeutic approaches for each of these conditions are also incorporated.

Pharmacology of Potassium Channels

Pharmacology of Potassium Channels
Author: Nikita Gamper
Publisher: Springer Nature
Total Pages: 546
Release: 2021-09-27
Genre: Medical
ISBN: 3030840522

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The aim of the present book is to comprehensively review current advances in understanding of genetics, structural biology, pharmacology of potassium channels and their roles in disease as well as to identify current gaps in knowledge. The ultimate goal is to provide a scientific foundation for better understanding of modulatory mechanisms and pharmacology of potassium channels and to use this understanding to drive future drug discovery. This book will be a must-have for academic and industrial scientists interested in physiology, pharmacology, pathology and structure-functional relationships of ion channels. The book will also be helpful for lecturers and students in the college and university classrooms, as well as for anyone interested in the state-of-the art in modern cell biology, physiology and pharmacology.

Regulation of Cardiac Potassium Channels in Health and Disease

Regulation of Cardiac Potassium Channels in Health and Disease
Author: Hannah Aizad Ledford
Publisher:
Total Pages:
Release: 2018
Genre:
ISBN: 9780438629837

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Background: Cardiac potassium channels are implicated in a range of inherited and acquired ion channelopathies. Consequently, the regulation of potassium channels is a critical process; malfunction of which results in changes to membrane surface expression, current density, and channel kinetics. Decreases or increases in current can arise from defects in the channels themselves or from dysregulation by chaperone, trafficking, degradation, or accessory proteins, in addition to intracellular and extracellular factors (e.g. Ca2+ concentrations, second messenger signaling molecules, hormonal influences, ion concentrations, and pH). Here, we investigated the effects of regulatory mechanisms on potassium channel function and cardiac arrhythmogenesis. We evaluated the roles of interacting proteins on atrial and ventricular K+ channel function. Using heterologous expression systems (HEK 293 cells), mouse models, and human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs), we evaluated the impacts of quality control mechanisms on the human ether-à-go-go related gene (hERG) K+ channel; interacting proteins on small-conductance Ca2+-activated K+ channels (SK); and anion exchanger Slc26a6 on cardiac excitability and action potential. Specifically, we tested the hypotheses that E3 ubiquitin ligase, RNF207, regulates hERG channel expression and function through endoplasmic reticulum (ER)-associated degradation (chapter 2); calmodulin (CaM) mutants decrease SK2 current density through regulation of channel activation kinetics (chapter 3); [alpha]-actinin and filamin A regulate SK2 channel trafficking and surface expression (chapter 4); and Slc26a6 regulates cardiac excitability and action potential via its effects on intracellular pH and membrane potential (chapter 5). Methods and Results: To further evaluate these effects, we utilized a combination of electrophysiology, molecular biology, and imaging techniques. Whole-cell voltage-clamp, perforated patch action potential recordings, co-immunoprecipitation, degradation and ubiquitinylation assays, and immunofluorescence through confocal microscopy and stimulated emission depletion (STED) high-resolution microscopy were used in this study. We found that wild-type RNF207 is able to ubiquitinylate mutant hERG subunits (T613M; hERG[subscript T613M]), whereas mutant RNF207 (G603fs; RNF207[subscript G603fs]) fails to tag mutant hERG for degradation, allowing significant reduction in current density. SK2 channel surface expression was shown to be significantly enhanced by alpha-actinin and filamin a coexpression. SK2 current density was regulated by Ca2+-CaM activation, which was altered in the presence of CaM mutants. Lastly, we found that knockdown of Slc26a6 resulted in significantly prolonged action potential duration, decreased calcium transients, and intracellular pH irregularities. Conclusions Regulatory mechanisms play a key role in K+ channel expression and function. Potentially detrimental effects of heterozygously inherited channel mutations, which would otherwise be masked, may be revealed in the case of simultaneously inherited mutations in quality control mechanisms. Consequently, the effects of mutations in interacting proteins, cardiac ion channels or exchangers, and intracellular messengers may be widespread and warrants further study.

Ion Channels in Health and Disease

Ion Channels in Health and Disease
Author: Geoffrey S. Pitt
Publisher: Academic Press
Total Pages: 394
Release: 2016-07-11
Genre: Science
ISBN: 0128020172

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Ion Channels in Health and Disease provides key insight to allow researchers to generate discoveries across disease states. A single resource that integrates disparate areas of biology and disease ion channel biology, this publication includes cross-referencing for disease, channels, and tissues. Offers a broad view of research of interest to early and experienced researchers across biological and biomedical research. Provides an overview of fundamental concepts in ion channels research to link defects in human disease Written in an accessible manner, without jargon Provides a helpful, easy cross-reference for diseases, channels, and tissues

Potassium Ion Channels: Molecular Structure, Function, and Diseases

Potassium Ion Channels: Molecular Structure, Function, and Diseases
Author:
Publisher: Academic Press
Total Pages: 522
Release: 1999-05-04
Genre: Medical
ISBN: 0080585175

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This book is the first to focus on potassium ion channels and covers the recent remarkable progress made in research on these proteins. Many diseases are caused by the abnormalities of potassium ion channels. They include diabetes mellitus, life-threatening hereditary cardiac arrhythmia, epilepsy, neural degeneration, and renal hypertension. Written by leading scientists in the field, this volume offers readers a comprehensive update of this field in the understanding of the genes, molecular structure, function and diseases of potassium ion channels. Key Features * The first comprehensive volume on potassium ion channels in all aspects of genes, molecular structure, function, and diseases * Completely up-to-date information * Written by leading scientists in the field

Potassium Channels in Cardiovascular Biology

Potassium Channels in Cardiovascular Biology
Author: Stephen L. Archer
Publisher: Springer Science & Business Media
Total Pages: 962
Release: 2012-12-06
Genre: Medical
ISBN: 1461513030

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Potassium channels (K+) are membrane-spanning proteins which serve many important functions and are becoming a hot topic in physiology. K+ channels determine or modulate many functions of vascular smooth muscle, endothelial and inflammatory cells, and thus are central to regulation of arterial tone and control of cell proliferation. They are also promising targets for antihypertensive treatments with drugs which open and close specific types of K+ channels, making for an active field of research. With their ability to control vascular tone, voltage-gated K+ channels play a significant role in both pulmonary and systemic hypertension as well as in cardiac arrhythmias. This book will highlight the latest discoveries by leading researchers pertaining to the role of K+ channels in the heart and blood vessels in normal physiology and a variety of disease states.

Jasper's Basic Mechanisms of the Epilepsies

Jasper's Basic Mechanisms of the Epilepsies
Author: Jeffrey Noebels
Publisher: OUP USA
Total Pages: 1258
Release: 2012-06-29
Genre: Medical
ISBN: 0199746540

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Jasper's Basic Mechanisms, Fourth Edition, is the newest most ambitious and now clinically relevant publishing project to build on the four-decade legacy of the Jasper's series. In keeping with the original goal of searching for "a better understanding of the epilepsies and rational methods of prevention and treatment.", the book represents an encyclopedic compendium neurobiological mechanisms of seizures, epileptogenesis, epilepsy genetics and comordid conditions. Of practical importance to the clinician, and new to this edition are disease mechanisms of genetic epilepsies and therapeutic approaches, ranging from novel antiepileptic drug targets to cell and gene therapies.