MOLECULAR IDENTIFICATION AND MESSENGER RNA LEVELS OF A MONOCARBOXYLATE TRANSPORTER (MCT) IN FUNDULUS HETEROCLITUS, A HYPOXIA TOLERANT TELEOST FISH

Monocarboxylate transporters (MCTs) are bi-directional symporters that couple proton movement to a variety of glycolytic metabolites, including lactate and pyruvate. As such, MCTs not only play a crucial role in pH regulation, but could also function in the distribution of substrates between organe...

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Main Author: Dowker, ANDREW
Other Authors: Queen's University (Kingston, Ont.). Theses (Queen's University (Kingston, Ont.))
Format: Others
Language:en
en
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/1974/5126
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OKQ.1974-51262013-12-20T03:39:29ZMOLECULAR IDENTIFICATION AND MESSENGER RNA LEVELS OF A MONOCARBOXYLATE TRANSPORTER (MCT) IN FUNDULUS HETEROCLITUS, A HYPOXIA TOLERANT TELEOST FISHDowker, ANDREWBiologyComparative PhysiologyMonocarboxylate transporters (MCTs) are bi-directional symporters that couple proton movement to a variety of glycolytic metabolites, including lactate and pyruvate. As such, MCTs not only play a crucial role in pH regulation, but could also function in the distribution of substrates between organelles, cells and tissues. This function may be critically important during hypoxia, when tissues depend on glycolytic flux for energy. We have examined the role of MCTs during hypoxia in an estuarine teleost, the common killifish, Fundulus heteroclitus, that routinely encounters environmental hypoxia. We cloned and sequenced a killifish MCT that resembled the MCT-2 isoform of mammals, and examined its expression pattern and regulation during hypoxia using real-time quantitative PCR. Killifish MCT mRNA levels were highest in the intestine (~2x) and lowest in the heart (~0.2x) as compared to the expression in the liver. Exposure to hypoxia (0.5 mg L-1) resulted in a significant increase in plasma lactate and glucose within 4 hours. However pyruvate and glycogen concentration in white muscle did not change significantly during this time. We observed no change in the mRNA levels of this MCT isoform in any tissue during 16h of hypoxia. This could indicate the regulation of this MCT at another level, a secondary role in hypoxia, or a role for this isoform unrelated to hypoxia tolerance.Thesis (Master, Biology) -- Queen's University, 2009-09-02 15:54:00.643Queen's University (Kingston, Ont.). Theses (Queen's University (Kingston, Ont.))2009-09-02 15:54:00.6432009-09-03T20:08:51Z2009-09-03T20:08:51Z2009-09-03T20:08:51ZThesis466070 bytesapplication/pdfhttp://hdl.handle.net/1974/5126enenCanadian thesesThis publication is made available by the authority of the copyright owner solely for the purpose of private study and research and may not be copied or reproduced except as permitted by the copyright laws without written authority from the copyright owner.
collection NDLTD
language en
en
format Others
sources NDLTD
topic Biology
Comparative Physiology
spellingShingle Biology
Comparative Physiology
Dowker, ANDREW
MOLECULAR IDENTIFICATION AND MESSENGER RNA LEVELS OF A MONOCARBOXYLATE TRANSPORTER (MCT) IN FUNDULUS HETEROCLITUS, A HYPOXIA TOLERANT TELEOST FISH
description Monocarboxylate transporters (MCTs) are bi-directional symporters that couple proton movement to a variety of glycolytic metabolites, including lactate and pyruvate. As such, MCTs not only play a crucial role in pH regulation, but could also function in the distribution of substrates between organelles, cells and tissues. This function may be critically important during hypoxia, when tissues depend on glycolytic flux for energy. We have examined the role of MCTs during hypoxia in an estuarine teleost, the common killifish, Fundulus heteroclitus, that routinely encounters environmental hypoxia. We cloned and sequenced a killifish MCT that resembled the MCT-2 isoform of mammals, and examined its expression pattern and regulation during hypoxia using real-time quantitative PCR. Killifish MCT mRNA levels were highest in the intestine (~2x) and lowest in the heart (~0.2x) as compared to the expression in the liver. Exposure to hypoxia (0.5 mg L-1) resulted in a significant increase in plasma lactate and glucose within 4 hours. However pyruvate and glycogen concentration in white muscle did not change significantly during this time. We observed no change in the mRNA levels of this MCT isoform in any tissue during 16h of hypoxia. This could indicate the regulation of this MCT at another level, a secondary role in hypoxia, or a role for this isoform unrelated to hypoxia tolerance. === Thesis (Master, Biology) -- Queen's University, 2009-09-02 15:54:00.643
author2 Queen's University (Kingston, Ont.). Theses (Queen's University (Kingston, Ont.))
author_facet Queen's University (Kingston, Ont.). Theses (Queen's University (Kingston, Ont.))
Dowker, ANDREW
author Dowker, ANDREW
author_sort Dowker, ANDREW
title MOLECULAR IDENTIFICATION AND MESSENGER RNA LEVELS OF A MONOCARBOXYLATE TRANSPORTER (MCT) IN FUNDULUS HETEROCLITUS, A HYPOXIA TOLERANT TELEOST FISH
title_short MOLECULAR IDENTIFICATION AND MESSENGER RNA LEVELS OF A MONOCARBOXYLATE TRANSPORTER (MCT) IN FUNDULUS HETEROCLITUS, A HYPOXIA TOLERANT TELEOST FISH
title_full MOLECULAR IDENTIFICATION AND MESSENGER RNA LEVELS OF A MONOCARBOXYLATE TRANSPORTER (MCT) IN FUNDULUS HETEROCLITUS, A HYPOXIA TOLERANT TELEOST FISH
title_fullStr MOLECULAR IDENTIFICATION AND MESSENGER RNA LEVELS OF A MONOCARBOXYLATE TRANSPORTER (MCT) IN FUNDULUS HETEROCLITUS, A HYPOXIA TOLERANT TELEOST FISH
title_full_unstemmed MOLECULAR IDENTIFICATION AND MESSENGER RNA LEVELS OF A MONOCARBOXYLATE TRANSPORTER (MCT) IN FUNDULUS HETEROCLITUS, A HYPOXIA TOLERANT TELEOST FISH
title_sort molecular identification and messenger rna levels of a monocarboxylate transporter (mct) in fundulus heteroclitus, a hypoxia tolerant teleost fish
publishDate 2009
url http://hdl.handle.net/1974/5126
work_keys_str_mv AT dowkerandrew molecularidentificationandmessengerrnalevelsofamonocarboxylatetransportermctinfundulusheteroclitusahypoxiatolerantteleostfish
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