Mechanism of thyroid-hormone regulated expression of the SERCA genes in skeletal muscle: Implications for thermogenesis

Thyroid hormone increases the Ca2+-ATPase activity of the sarcoplasmic reticulum (SR) in skeletal muscle, thereby increasing the energy-turnover associated with Ca2+-cycling during contraction and rest. The fast-muscle isoform of the Ca2+-ATPase (SERCA1) and the slow-muscle isoform (SERCA2a), are encoded by two genes that are transcriptionally regulated by T3. The SERCA1 isoform can be expressed to considerably higher levels than the SERCA2a isoform. The stimulation of transcription of the SERCA1 gene by T3 is mediated by two thyroid hormone response elements, located in the promoter of this gene. The intracellular [Ca2+] can modulate the effect of T3. The increase in SR Ca2+-ATPase activity seen when T3-levels rise above normal, results from the induction of SERCA1 expression in slow muscle fibers. Concomitant high levels of Ca2+-ATPase activity are associated with down-regulation of SERCA2a expression in these fibers. The observed T3-dependent increase in SERCA1 expression and associated Ca2+-ATPase activity will increase the overall metabolic rate of the organism significantly under normal conditions, because of the high average level of contractile activity of slow fibers. Given the rise in serum T3-levels during prolonged cold exposure, these data suggest that fiber-specific stimulation of SERCA1 expression contributes to the thermogenic response in non-shivering thermogenesis. This mechanism may be particularly relevant in larger mammals, which have a relatively high percentage of slow fibers in skeletal muscle, and which need to rely on tissues other than brown fat for the generation of extra heat

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Main Authors: Simonides, W.S., Thelen, M.H.M., van der Linden, C.G., Muller, A., Hardeveld, C.
Format: Article/Letter to editor biblioteca
Language:English
Subjects:cold-acclimated ducklings, differential expression, force development, heat-production, messenger-rna levels, postnatal-development, receptor isoforms, sarcoplasmic-reticulum ca2+-atpase, twitch muscle, uncoupling protein,
Online Access:https://research.wur.nl/en/publications/mechanism-of-thyroid-hormone-regulated-expression-of-the-serca-ge
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spelling dig-wur-nl-wurpubs-3478972025-01-23 Simonides, W.S. Thelen, M.H.M. van der Linden, C.G. Muller, A. Hardeveld, C. Article/Letter to editor Bioscience Reports 21 (2001) 2 ISSN: 0144-8463 Mechanism of thyroid-hormone regulated expression of the SERCA genes in skeletal muscle: Implications for thermogenesis 2001 Thyroid hormone increases the Ca2+-ATPase activity of the sarcoplasmic reticulum (SR) in skeletal muscle, thereby increasing the energy-turnover associated with Ca2+-cycling during contraction and rest. The fast-muscle isoform of the Ca2+-ATPase (SERCA1) and the slow-muscle isoform (SERCA2a), are encoded by two genes that are transcriptionally regulated by T3. The SERCA1 isoform can be expressed to considerably higher levels than the SERCA2a isoform. The stimulation of transcription of the SERCA1 gene by T3 is mediated by two thyroid hormone response elements, located in the promoter of this gene. The intracellular [Ca2+] can modulate the effect of T3. The increase in SR Ca2+-ATPase activity seen when T3-levels rise above normal, results from the induction of SERCA1 expression in slow muscle fibers. Concomitant high levels of Ca2+-ATPase activity are associated with down-regulation of SERCA2a expression in these fibers. The observed T3-dependent increase in SERCA1 expression and associated Ca2+-ATPase activity will increase the overall metabolic rate of the organism significantly under normal conditions, because of the high average level of contractile activity of slow fibers. Given the rise in serum T3-levels during prolonged cold exposure, these data suggest that fiber-specific stimulation of SERCA1 expression contributes to the thermogenic response in non-shivering thermogenesis. This mechanism may be particularly relevant in larger mammals, which have a relatively high percentage of slow fibers in skeletal muscle, and which need to rely on tissues other than brown fat for the generation of extra heat en application/pdf https://research.wur.nl/en/publications/mechanism-of-thyroid-hormone-regulated-expression-of-the-serca-ge 10.1023/A:1013692023449 https://edepot.wur.nl/30211 cold-acclimated ducklings differential expression force development heat-production messenger-rna levels postnatal-development receptor isoforms sarcoplasmic-reticulum ca2+-atpase twitch muscle uncoupling protein Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic cold-acclimated ducklings
differential expression
force development
heat-production
messenger-rna levels
postnatal-development
receptor isoforms
sarcoplasmic-reticulum ca2+-atpase
twitch muscle
uncoupling protein
cold-acclimated ducklings
differential expression
force development
heat-production
messenger-rna levels
postnatal-development
receptor isoforms
sarcoplasmic-reticulum ca2+-atpase
twitch muscle
uncoupling protein
spellingShingle cold-acclimated ducklings
differential expression
force development
heat-production
messenger-rna levels
postnatal-development
receptor isoforms
sarcoplasmic-reticulum ca2+-atpase
twitch muscle
uncoupling protein
cold-acclimated ducklings
differential expression
force development
heat-production
messenger-rna levels
postnatal-development
receptor isoforms
sarcoplasmic-reticulum ca2+-atpase
twitch muscle
uncoupling protein
Simonides, W.S.
Thelen, M.H.M.
van der Linden, C.G.
Muller, A.
Hardeveld, C.
Mechanism of thyroid-hormone regulated expression of the SERCA genes in skeletal muscle: Implications for thermogenesis
description Thyroid hormone increases the Ca2+-ATPase activity of the sarcoplasmic reticulum (SR) in skeletal muscle, thereby increasing the energy-turnover associated with Ca2+-cycling during contraction and rest. The fast-muscle isoform of the Ca2+-ATPase (SERCA1) and the slow-muscle isoform (SERCA2a), are encoded by two genes that are transcriptionally regulated by T3. The SERCA1 isoform can be expressed to considerably higher levels than the SERCA2a isoform. The stimulation of transcription of the SERCA1 gene by T3 is mediated by two thyroid hormone response elements, located in the promoter of this gene. The intracellular [Ca2+] can modulate the effect of T3. The increase in SR Ca2+-ATPase activity seen when T3-levels rise above normal, results from the induction of SERCA1 expression in slow muscle fibers. Concomitant high levels of Ca2+-ATPase activity are associated with down-regulation of SERCA2a expression in these fibers. The observed T3-dependent increase in SERCA1 expression and associated Ca2+-ATPase activity will increase the overall metabolic rate of the organism significantly under normal conditions, because of the high average level of contractile activity of slow fibers. Given the rise in serum T3-levels during prolonged cold exposure, these data suggest that fiber-specific stimulation of SERCA1 expression contributes to the thermogenic response in non-shivering thermogenesis. This mechanism may be particularly relevant in larger mammals, which have a relatively high percentage of slow fibers in skeletal muscle, and which need to rely on tissues other than brown fat for the generation of extra heat
format Article/Letter to editor
topic_facet cold-acclimated ducklings
differential expression
force development
heat-production
messenger-rna levels
postnatal-development
receptor isoforms
sarcoplasmic-reticulum ca2+-atpase
twitch muscle
uncoupling protein
author Simonides, W.S.
Thelen, M.H.M.
van der Linden, C.G.
Muller, A.
Hardeveld, C.
author_facet Simonides, W.S.
Thelen, M.H.M.
van der Linden, C.G.
Muller, A.
Hardeveld, C.
author_sort Simonides, W.S.
title Mechanism of thyroid-hormone regulated expression of the SERCA genes in skeletal muscle: Implications for thermogenesis
title_short Mechanism of thyroid-hormone regulated expression of the SERCA genes in skeletal muscle: Implications for thermogenesis
title_full Mechanism of thyroid-hormone regulated expression of the SERCA genes in skeletal muscle: Implications for thermogenesis
title_fullStr Mechanism of thyroid-hormone regulated expression of the SERCA genes in skeletal muscle: Implications for thermogenesis
title_full_unstemmed Mechanism of thyroid-hormone regulated expression of the SERCA genes in skeletal muscle: Implications for thermogenesis
title_sort mechanism of thyroid-hormone regulated expression of the serca genes in skeletal muscle: implications for thermogenesis
url https://research.wur.nl/en/publications/mechanism-of-thyroid-hormone-regulated-expression-of-the-serca-ge
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