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首页> 外文期刊>Journal of applied physiology >Enhanced technique to measure proteins in single segments of human skeletal muscle fibers: fiber-type dependence of AMPK-alpha1 and -beta1.
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Enhanced technique to measure proteins in single segments of human skeletal muscle fibers: fiber-type dependence of AMPK-alpha1 and -beta1.

机译:测量人体骨骼肌纤维单个段中蛋白质的增强技术:AMPK-alpha1和-beta1的纤维类型依赖性。

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摘要

Human physiological studies typically use skeletal muscle biopsies from the heterogeneous vastus lateralis muscle comprised of both fast-twitch and slow-twitch fiber types. It is likely that potential changes of physiological importance are overlooked because fiber-type specific responses may not be apparent in the whole muscle preparation. A technological advance in Western blotting is presented where proteins are analyzed in just one small segment (<2 mm) of individual fibers dissected from freeze-dried muscle samples using standard laboratory equipment. A significant advance is being able to classify every fiber at the level of both contractile (myosin heavy chain and tropomyosin) and sarcoplasmic reticulum [sarco(endo)plasmic reticulum Ca(2+)-ATPase type 1] properties and then being able to measure specific proteins in the very same segments. This removes the need to fiber type segments before further analyses and, as such, dramatically reduces the time required for sample collection. Compared with slow-twitch fibers, there was less AMP-activated protein kinase (AMPK)-alpha(1) ( approximately 25%) and AMPK-beta(1) ( approximately 60%) in fast-twitch fibers from human skeletal muscle biopsies.
机译:人类生理研究通常使用来自异质股外侧肌的骨骼肌活检,该活检包括快肌纤维和慢肌纤维类型。生理重要性的潜在变化可能会被忽略,因为纤维类型的特异性反应在整个肌肉制备中可能并不明显。本文介绍了蛋白质印迹技术的一项先进技术,其中可以使用标准实验室设备对从冻干肌肉样品中分离出的单个纤维的一小段(<2 mm)进行蛋白质分析。一项重大的进步是能够在收缩性(肌球蛋白重链和原肌球蛋白)和肌质网[sarco(endo)plasmic reticulum Ca(2 +)-ATPase type 1]属性的水平上对每种纤维进行分类,然后能够进行测量相同区段中的特定蛋白质。这消除了在进一步分析之前对纤维类型片段的需要,因此大大减少了样品收集所需的时间。与慢肌纤维相比,来自人体骨骼肌活检的快肌纤维中的AMP激活蛋白激酶(AMPK)-alpha(1)(约25%)和AMPK-beta(1)(约60%)更少。

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