Nosek T M, Brotto M A, Essig D A, Mestril R, Conover R C, Dillmann W H, Kolbeck R C
Department of Physiology and Biophysics, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106-4963, USA.
Physiol Genomics. 2000 Nov 9;4(1):25-33. doi: 10.1152/physiolgenomics.2000.4.1.25.
The influence of inducible heat stress proteins on protecting contracting skeletal muscle against fatigue-induced injury was investigated. A line of transgenic mice overexpressing the inducible form of the 72-kDa heat shock protein (HSP72) in skeletal muscles was used. We examined the relationship between muscle contractility and levels of the constitutive (HSC73) and inducible (HSP72) forms of the 72-kDa heat shock protein in intact, mouse extensor digitorum longus (EDL), soleus (SOL), and the diaphragm (DPH). In all transgenic muscles, HSP72 was expressed at higher levels compared with transgene-negative controls, where HSP72 was below the level of detection. At the same time, HSC73 levels were downregulated in all transgenic muscle types. Shipment-related stress caused an elevation in the levels of HSP72 in all muscles for 1 wk after arrival of the animals. We also found that, although no statistical differences in response to intermittent fatiguing stimulation in the contractile properties of intact transgene-positive muscles compared with their transgene-negative counterparts were observed, the response of intact transgene-positive EDL muscles to caffeine was enhanced. These findings demonstrate that elevated HSP72 does not protect EDL, SOL, or DPH muscles from the effects of intermittent fatiguing stimulation. However, HSP72 may influence the excitation-contraction coupling (ECC) process, either directly or indirectly, in EDL muscle. If the effects on ECC were indirect, then these results would suggest that manipulation of a specific gene might cause functional effects that seem independent of the manipulated gene/protein.
研究了诱导型热应激蛋白对收缩中的骨骼肌免受疲劳诱导损伤的保护作用。使用了一种在骨骼肌中过表达72 kDa热休克蛋白(HSP72)诱导形式的转基因小鼠品系。我们检测了完整的小鼠趾长伸肌(EDL)、比目鱼肌(SOL)和膈肌(DPH)中72 kDa热休克蛋白的组成型(HSC73)和诱导型(HSP72)形式的水平与肌肉收缩性之间的关系。在所有转基因肌肉中,与转基因阴性对照相比,HSP72表达水平更高,而转基因阴性对照中HSP72低于检测水平。同时,所有转基因肌肉类型中的HSC73水平均下调。运输相关应激导致动物到达后1周内所有肌肉中HSP72水平升高。我们还发现,尽管与转基因阴性对应物相比,完整的转基因阳性肌肉在对间歇性疲劳刺激的收缩特性方面没有观察到统计学差异,但完整的转基因阳性EDL肌肉对咖啡因的反应增强。这些发现表明,HSP72水平升高并不能保护EDL、SOL或DPH肌肉免受间歇性疲劳刺激的影响。然而,HSP72可能直接或间接影响EDL肌肉中的兴奋-收缩偶联(ECC)过程。如果对ECC的影响是间接的,那么这些结果将表明操纵一个特定基因可能会产生看似独立于被操纵基因/蛋白质的功能效应。