The functional role of ionic regulation of the NaS+/Ca2S+ exchanger assessed in transgenic mouse hearts

Sodium-calcium exchange is the principal mechanism for cellular Ca 2+ efflux following a cardiac contraction. On a beat-to-beat basis, the Na+/Ca2+ exchanger removes a similar quantity of Ca2+ from cardiac cells as that entering through L-type Ca2+ channels. As such, the Na+/Ca2+ exchanger plays a...

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Main Author: Maxwell, Krista Dawn
Format: Others
Language:en
en_US
Published: 2007
Online Access:http://hdl.handle.net/1993/1614
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-MWU.anitoba.ca-dspace#1993-16142013-01-11T13:29:05ZMaxwell, Krista Dawn2007-05-18T12:14:25Z2007-05-18T12:14:25Z1999-08-01T00:00:00Zhttp://hdl.handle.net/1993/1614Sodium-calcium exchange is the principal mechanism for cellular Ca 2+ efflux following a cardiac contraction. On a beat-to-beat basis, the Na+/Ca2+ exchanger removes a similar quantity of Ca2+ from cardiac cells as that entering through L-type Ca2+ channels. As such, the Na+/Ca2+ exchanger plays a critical role in controlling cardiac contractility. To begin determining whether or not ionic regulation of the Na+/Ca 2+ exchanger is physiologically relevant, transgenic mice overexpressing either the wild-type canine cardiac exchanger, NCX1.1, or a deletion mutant in which ionic regulation has been nearly abolished, were examined. The initial characterization was carried out on 'Xenopus laevis' oocytes expressing these two different exchangers to define their regulatory properties. Since these Na+/Ca2+ exchangers originated from a cloned canine exchanger and were being expressed in a mouse model system, the native regulatory processes of both dog and mouse Na+/C 2+ exchangers were then examined to determine whether or not species differences existed. Using the giant excised patch clamp technique, ventricular myocytes isolated from each species were studied. (Abstract shortened by UMI.)4634268 bytes184 bytesapplication/pdftext/plainenen_USThe functional role of ionic regulation of the NaS+/Ca2S+ exchanger assessed in transgenic mouse heartsPhysiologyM.Sc.
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language en
en_US
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description Sodium-calcium exchange is the principal mechanism for cellular Ca 2+ efflux following a cardiac contraction. On a beat-to-beat basis, the Na+/Ca2+ exchanger removes a similar quantity of Ca2+ from cardiac cells as that entering through L-type Ca2+ channels. As such, the Na+/Ca2+ exchanger plays a critical role in controlling cardiac contractility. To begin determining whether or not ionic regulation of the Na+/Ca 2+ exchanger is physiologically relevant, transgenic mice overexpressing either the wild-type canine cardiac exchanger, NCX1.1, or a deletion mutant in which ionic regulation has been nearly abolished, were examined. The initial characterization was carried out on 'Xenopus laevis' oocytes expressing these two different exchangers to define their regulatory properties. Since these Na+/Ca2+ exchangers originated from a cloned canine exchanger and were being expressed in a mouse model system, the native regulatory processes of both dog and mouse Na+/C 2+ exchangers were then examined to determine whether or not species differences existed. Using the giant excised patch clamp technique, ventricular myocytes isolated from each species were studied. (Abstract shortened by UMI.)
author Maxwell, Krista Dawn
spellingShingle Maxwell, Krista Dawn
The functional role of ionic regulation of the NaS+/Ca2S+ exchanger assessed in transgenic mouse hearts
author_facet Maxwell, Krista Dawn
author_sort Maxwell, Krista Dawn
title The functional role of ionic regulation of the NaS+/Ca2S+ exchanger assessed in transgenic mouse hearts
title_short The functional role of ionic regulation of the NaS+/Ca2S+ exchanger assessed in transgenic mouse hearts
title_full The functional role of ionic regulation of the NaS+/Ca2S+ exchanger assessed in transgenic mouse hearts
title_fullStr The functional role of ionic regulation of the NaS+/Ca2S+ exchanger assessed in transgenic mouse hearts
title_full_unstemmed The functional role of ionic regulation of the NaS+/Ca2S+ exchanger assessed in transgenic mouse hearts
title_sort functional role of ionic regulation of the nas+/ca2s+ exchanger assessed in transgenic mouse hearts
publishDate 2007
url http://hdl.handle.net/1993/1614
work_keys_str_mv AT maxwellkristadawn thefunctionalroleofionicregulationofthenasca2sexchangerassessedintransgenicmousehearts
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