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基于飞轮的抗阻运动对成年大鼠卸载过程中导致肌肉萎缩的相关进程的影响。

Effect of flywheel-based resistance exercise on processes contributing to muscle atrophy during unloading in adult rats.

作者信息

Dupont-Versteegden Esther E, Fluckey James D, Knox Micheal, Gaddy Dana, Peterson Charlotte A

机构信息

Department of Geriatrics, University of Arkansas for Medical Sciences, 4301 West Markham #807, Little Rock, Arkansas 72205, USA.

出版信息

J Appl Physiol (1985). 2006 Jul;101(1):202-12. doi: 10.1152/japplphysiol.01540.2005. Epub 2006 Apr 6.

Abstract

Flywheel-based resistance exercise (RE) attenuates muscle atrophy during hindlimb suspension. We have previously shown that protein synthesis is elevated in response to RE, but the effect on protein degradation, cell proliferation, or apoptosis was not investigated. We hypothesized that, in addition to affecting protein synthesis, RE inhibits processes that actively contribute to muscle atrophy during hindlimb suspension. Male rats were housed in regular cages (control), tail suspended for 2 wk (HS), or HS with RE every other day for 2 wk (HSRE). Although RE attenuated soleus muscle atrophy during HS, the observed fivefold elevation in apoptosis and the 53% decrease in cell proliferation observed with HS were unaffected by RE. Expression of genes encoding components of the ubiquitin-proteasome pathway of protein degradation were elevated with HS, including ubiquitin, MAFbx, Murf-1, Nedd4, and XIAP, and proteasome subunits C2 and C9. Total ubiquitinated protein was increased with HS, but proteasome activity was not different from control. RE selectively altered the expression of different components of this pathway: MAFbx, Murf-1, and ubiquitin mRNA abundance were downregulated, whereas C2 and C9 subunits remained elevated. Similarly, Nedd4 and XIAP continued to be upregulated, potentially accounting for the observed augmentation in total ubiquitinated protein with RE. Thus a different constellation of proteins is likely ubiquitinated with RE due to altered ubiquitin ligase composition. In summary, the flywheel-based resistance exercise paradigm used in this study is associated with the inhibition of some mechanisms associated with muscle atrophy, such as the increase in MAFbx and Murf-1, but not with others, such as proteasome subunit remodeling, apoptosis, and decreased proliferation, potentially accounting for the inability to completely restore muscle mass. Identifying specific exercise parameters that affect these latter processes may be useful in designing effective exercise strategies in the elderly or during spaceflight.

摘要

基于飞轮的抗阻运动(RE)可减轻后肢悬吊期间的肌肉萎缩。我们之前已经表明,RE可使蛋白质合成增加,但未研究其对蛋白质降解、细胞增殖或细胞凋亡的影响。我们推测,除了影响蛋白质合成外,RE还会抑制后肢悬吊期间积极促成肌肉萎缩的过程。将雄性大鼠饲养在常规笼中(对照组),使其尾部悬吊2周(HS组),或每隔一天进行RE并同时尾部悬吊2周(HSRE组)。尽管RE减轻了HS期间比目鱼肌的萎缩,但HS时观察到的细胞凋亡增加五倍以及细胞增殖减少53%并未受到RE的影响。蛋白质降解的泛素-蛋白酶体途径各组分的编码基因表达在HS时升高,包括泛素、MAFbx、Murf-1、Nedd4和XIAP,以及蛋白酶体亚基C2和C9。HS时总泛素化蛋白增加,但蛋白酶体活性与对照组无差异。RE选择性地改变了该途径不同组分的表达:MAFbx、Murf-1和泛素mRNA丰度下调,而C2和C9亚基仍升高。同样,Nedd4和XIAP继续上调,这可能是RE时观察到的总泛素化蛋白增加的原因。因此,由于泛素连接酶组成的改变,RE可能使不同的蛋白质组被泛素化。总之,本研究中使用的基于飞轮的抗阻运动模式与抑制一些与肌肉萎缩相关的机制有关,如MAFbx和Murf-1的增加,但与其他机制无关,如蛋白酶体亚基重塑、细胞凋亡和增殖减少,这可能是无法完全恢复肌肉质量的原因。确定影响这些后期过程的特定运动参数可能有助于为老年人或太空飞行期间设计有效的运动策略。

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