Single nucleotide polymorphisms in the myostatin (MSTN) and muscle creatine kinase (CKM) genes are not associated with elite endurance performance

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Deutscher übersetzter Titel:Einzelne Nukleotidpolymorphien in den Myostatin- (MSTN) und Muskelkreatinkinase- (CKM)Genen stehen nicht in Zusammenhang mit Spitzenausdauerleistung
Autor:Doering, F.; Onur, S.; Kürbitz, C.; Boulay, M.R.; Perusse, L.; Rankinen, T.; Rauramaa, R.; Wolfarth, Bernd; Bouchard, C.
Erschienen in:Scandinavian journal of medicine & science in sports
Veröffentlicht:21 (2011), 6, S. 841-845, Lit.
Format: Literatur (SPOLIT)
Publikationstyp: Zeitschriftenartikel
Medienart: Gedruckte Ressource Elektronische Ressource (online)
Sprache:Englisch
ISSN:0905-7188, 1600-0838
DOI:10.1111/j.1600-0838.2010.01131.x
Schlagworte:
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Erfassungsnummer:PU201107005980
Quelle:BISp
id PU201107005980
bisp-collection db
format Literatur
last_indexed 2023-11-24T08:44:54Z
first_indexed 2011-07-14T10:21:20Z
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hierarchy_top_id JO00000001282
hierarchy_parent_id JOI201100060001282
hierarchy_top_title Scandinavian journal of medicine & science in sports
hierarchy_parent_title Scandinavian journal of medicine & science in sports, 2011, 6
is_hierarchy_id PU201107005980
is_hierarchy_title Single nucleotide polymorphisms in the myostatin (MSTN) and muscle creatine kinase (CKM) genes are not associated with elite endurance performance
hierarchy_sequence 0841
recordtype bisparticle
publishDate 2011
publishDate_facet 2011
language eng
title Single nucleotide polymorphisms in the myostatin (MSTN) and muscle creatine kinase (CKM) genes are not associated with elite endurance performance
spellingShingle Single nucleotide polymorphisms in the myostatin (MSTN) and muscle creatine kinase (CKM) genes are not associated with elite endurance performance
Ausdauerleistung
Kreatin
Myostatin
Sauerstoffaufnahme
Skelettmuskulatur
Sportmedizin
title_sort single nucleotide polymorphisms in the myostatin mstn and muscle creatine kinase ckm genes are not associated with elite endurance performance
title_short Single nucleotide polymorphisms in the myostatin (MSTN) and muscle creatine kinase (CKM) genes are not associated with elite endurance performance
title_alt Einzelne Nukleotidpolymorphien in den Myostatin- (MSTN) und Muskelkreatinkinase- (CKM)Genen stehen nicht in Zusammenhang mit Spitzenausdauerleistung
title_alt_lang deu
media_type Gedruckte Ressource
Elektronische Ressource (online)
city Oxford
abstract Maximal oxygen uptake (VO2max) is one of the most important determinants of elite endurance performance. VO2max is determined by a whole range of genetic and environmental factors. Single nucleotide polymorphisms (SNPs) in muscle myostatin (MSTN) and creatine kinase (CKM) genes are candidates for VO2max and skeletal muscle performance phenotypes. Common MSTN (rs3791783, rs11681628 and rs7570532) and CKM (rs344816, rs10410448, rs432979, rs1133190, rs7260359, rs7260463 and rs4884) SNPs, selected from HapMap CEU data in order to tag the genetic variability of the proteins, were genotyped in 316 male Caucasian elite endurance athletes and 304 sedentary controls from the Genathlete study. Association with elite endurance performance was determined by logistic regression analysis. The P-value for statistical significance was set at <0.01. None of the SNPs or haplotypes showed a significant association with elite endurance status. We conclude that common variants of MSTN and CKM genes do not play a role in attaining high-level endurance performance in Caucasian populations. Verf.-Referat
abstract_lang eng
abstract_type abstract
author2 Doering, F.
Onur, S.
Kürbitz, C.
Boulay, M.R.
Perusse, L.
Rankinen, T.
Rauramaa, R.
Wolfarth, Bernd
Bouchard, C.
author_facet Doering, F.
Onur, S.
Kürbitz, C.
Boulay, M.R.
Perusse, L.
Rankinen, T.
Rauramaa, R.
Wolfarth, Bernd
Bouchard, C.
author2-role Autor
Autor
Autor
Autor
Autor
Autor
Autor
Autor
Autor
author2-authorityid






P24250

author_author_facet Doering, F.
Onur, S.
Kürbitz, C.
Boulay, M.R.
Perusse, L.
Rankinen, T.
Rauramaa, R.
Wolfarth, Bernd
Bouchard, C.
author2-synonym








author2_hierarchy_facet 0/Autor/
1/Autor/Doering, F./
0/Autor/
1/Autor/Onur, S./
0/Autor/
1/Autor/Kürbitz, C./
0/Autor/
1/Autor/Boulay, M.R./
0/Autor/
1/Autor/Perusse, L./
0/Autor/
1/Autor/Rankinen, T./
0/Autor/
1/Autor/Rauramaa, R./
0/Autor/
1/Autor/Wolfarth, Bernd/
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1/Autor/Bouchard, C./
doi 10.1111/j.1600-0838.2010.01131.x
spelling 10.1111/j.1600-0838.2010.01131.x
0905-7188
1600-0838
SMSSEO
1077418-x
Ausdauerleistung
Kreatin
Myostatin
Sauerstoffaufnahme
Skelettmuskulatur
Sportmedizin
creatine
endurance performance
myostatin
oxygen uptake
skeletal muscles
sports medicine
Medizin
Geschichte der Medizin
Untersuchung, sportmedizinische
Wasserdampf

Muskulatur
Skelettmuskel
Muskel
Sauerstoffaufnahme, relative
Sauerstoffverbrauch
oxygen intake
oxygen consumption
Single nucleotide polymorphisms in the myostatin (MSTN) and muscle creatine kinase (CKM) genes are not associated with elite endurance performance
PU201107005980
201107005980
url https://dx.doi.org/10.1111/j.1600-0838.2010.01131.x
url-type fulltext
url-free 0
issn 0905-7188
1600-0838
coden SMSSEO
zdb 1077418-x
location_hierarchy_facet 0/Großbritannien/
1/Großbritannien/England/
topic Ausdauerleistung
Kreatin
Myostatin
Sauerstoffaufnahme
Skelettmuskulatur
Sportmedizin
topic_facet Ausdauerleistung
Kreatin
Myostatin
Sauerstoffaufnahme
Skelettmuskulatur
Sportmedizin
topic_en creatine
endurance performance
myostatin
oxygen uptake
skeletal muscles
sports medicine
topic_en_facet creatine
endurance performance
myostatin
oxygen uptake
skeletal muscles
sports medicine
synonym Medizin
Geschichte der Medizin
Untersuchung, sportmedizinische
Wasserdampf

Muskulatur
Skelettmuskel
Muskel
Sauerstoffaufnahme, relative
Sauerstoffverbrauch
synonym_en oxygen intake
oxygen consumption
journal_facet Scandinavian journal of medicine & science in sports
container_title Scandinavian journal of medicine & science in sports
container_volume 21
container_issue 6
container_start_page S. 841-845
has_references 1
institution BISp
journal_fac JO00000001282
journal_year 2011
journal_issue 6
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