CaMKII含量影响再生骨骼肌的收缩特性,但不影响线粒体特性。

Q1 Biochemistry, Genetics and Molecular Biology
Wouter Eilers, Richard T Jaspers, Arnold de Haan, Céline Ferrié, Paola Valdivieso, Martin Flück
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引用次数: 22

摘要

背景:多聚体钙/钙调素依赖性蛋白激酶II (CaMKII)是骨骼肌中的主要CaMK,其表达随着耐力训练而增加。CaMK家族成员参与了收缩诱导的钙处理、快速肌球蛋白IIA型表达和线粒体生物发生的调节。本研究的目的是研究CaMKII含量增加对体内收缩性和线粒体表型表达的作用。为此,我们尝试在骨骼肌中共同表达α -和β - camkii亚型,并描述了对收缩和线粒体表型的影响。结果:电转染3月龄大鼠右腿快缩肌腓肠肌(GM)和慢缩肌比目鱼肌(SOL),制备了天然α/β CaMKII表达质粒。通过对照转染的对侧腿肌肉和未转染的对侧腿肌肉的比较,确定了效果。转染后第7天肌纤维中α/β CaMKII含量增加4 ~ 5倍。转染率在SOL中比GM肌肉中更明显(即12.6比3.5%)。等长运动后β-CaMKII苏氨酸287磷酸化增加,高强度运动后COXI、COXIV、SDHB转录物下调,表明过表达的α/β CaMKII具有功能性。在正常笼活动下,α/β CaMKII过表达加速了SOL肌的兴奋-收缩耦合和舒张,增加了SERCA2、ANXV和fast myosin type IIA/X含量,但不影响线粒体蛋白含量。这些影响是在肌肉纤维再生的背景下观察到的。结论:升高的CaMKII含量促进了再生肌肉中从慢到快的纤维转移,但在没有耐力刺激的情况下不足以刺激线粒体生物发生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

CaMKII content affects contractile, but not mitochondrial, characteristics in regenerating skeletal muscle.

CaMKII content affects contractile, but not mitochondrial, characteristics in regenerating skeletal muscle.

CaMKII content affects contractile, but not mitochondrial, characteristics in regenerating skeletal muscle.

CaMKII content affects contractile, but not mitochondrial, characteristics in regenerating skeletal muscle.

Background: The multi-meric calcium/calmodulin-dependent protein kinase II (CaMKII) is the main CaMK in skeletal muscle and its expression increases with endurance training. CaMK family members are implicated in contraction-induced regulation of calcium handling, fast myosin type IIA expression and mitochondrial biogenesis. The objective of this study was to investigate the role of an increased CaMKII content for the expression of the contractile and mitochondrial phenotype in vivo. Towards this end we attempted to co-express alpha- and beta-CaMKII isoforms in skeletal muscle and characterised the effect on the contractile and mitochondrial phenotype.

Results: Fast-twitch muscle m. gastrocnemius (GM) and slow-twitch muscle m. soleus (SOL) of the right leg of 3-month old rats were transfected via electro-transfer of injected expression plasmids for native α/β CaMKII. Effects were identified from the comparison to control-transfected muscles of the contralateral leg and non-transfected muscles. α/β CaMKII content in muscle fibres was 4-5-fold increased 7 days after transfection. The transfection rate was more pronounced in SOL than GM muscle (i.e. 12.6 vs. 3.5%). The overexpressed α/β CaMKII was functional as shown through increased threonine 287 phosphorylation of β-CaMKII after isometric exercise and down-regulated transcripts COXI, COXIV, SDHB after high-intensity exercise in situ. α/β CaMKII overexpression under normal cage activity accelerated excitation-contraction coupling and relaxation in SOL muscle in association with increased SERCA2, ANXV and fast myosin type IIA/X content but did not affect mitochondrial protein content. These effects were observed on a background of regenerating muscle fibres.

Conclusion: Elevated CaMKII content promotes a slow-to-fast type fibre shift in regenerating muscle but is not sufficient to stimulate mitochondrial biogenesis in the absence of an endurance stimulus.

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来源期刊
BMC Physiology
BMC Physiology Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
9.60
自引率
0.00%
发文量
0
期刊介绍: BMC Physiology is an open access journal publishing original peer-reviewed research articles in cellular, tissue-level, organismal, functional, and developmental aspects of physiological processes. BMC Physiology (ISSN 1472-6793) is indexed/tracked/covered by PubMed, MEDLINE, BIOSIS, CAS, EMBASE, Scopus, Zoological Record and Google Scholar.
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