Department of Bioengineering, University of California, San Diego, CA, USA.
Physiol Genomics. 2013 Apr 16;45(8):321-31. doi: 10.1152/physiolgenomics.00132.2012. Epub 2013 Feb 26.
In this work, the interaction between the loss of a primary component of the skeletal muscle cytoskeleton, desmin, and two common physiological stressors, acute mechanical injury and aging, were investigated at the transcriptional, protein, and whole muscle levels. The transcriptional response of desmin knockout (des(-/-)) plantarflexors to a bout of 50 eccentric contractions (ECCs) showed substantial overlap with the response in wild-type (wt) muscle. However, changes in the expression of genes involved in muscle response to injury were blunted in adult des(-/-) muscle compared with wt (fold change with ECC in des(-/-) and wt, respectively: Mybph, 1.4 and 2.9; Xirp1, 2.2 and 5.7; Csrp3, 1.8 and 4.3), similar to the observed blunted mechanical response (torque drop: des(-/-) 30.3% and wt 55.5%). Interestingly, in the absence of stressors, des(-/-) muscle exhibited elevated expression of many these genes compared with wt. The largest transcriptional changes were observed in the interaction between aging and the absence of desmin, including many genes related to slow fiber pathway (Myh7, Myl3, Atp2a2, and Casq2) and insulin sensitivity (Tlr4, Trib3, Pdk3, and Pdk4). Consistent with these transcriptional changes, adult des(-/-) muscle exhibited a significant fiber type shift from fast to slow isoforms of myosin heavy chain (wt, 5.3% IIa and 71.7% IIb; des(-/-), 8.4% IIa and 61.4% IIb) and a decreased insulin-stimulated glucose uptake (wt, 0.188 μmol/g muscle/20 min; des(-/-), 0.085 μmol/g muscle/20 min). This work points to novel areas of influence of this cytoskeletal protein and directs future work to elucidate its function.
在这项工作中,研究了骨骼肌细胞骨架主要成分之一的结蛋白缺失(desmin knockout,des(-/-))与两种常见的生理应激源——急性机械损伤和衰老——之间在转录、蛋白质和整块肌肉水平上的相互作用。与野生型(wt)肌肉相比,des(-/-)比目鱼肌对 50 次偏心收缩(ECC)的反应的转录反应有很大的重叠。然而,与 wt 相比,成年 des(-/-)肌肉中涉及肌肉对损伤反应的基因表达的变化减弱(ECC 后 des(-/-)和 wt 中的基因表达变化倍数:Mybph,1.4 和 2.9;Xirp1,2.2 和 5.7;Csrp3,1.8 和 4.3),与观察到的机械反应减弱相似(扭矩下降:des(-/-)为 30.3%,wt 为 55.5%)。有趣的是,在没有应激源的情况下,与 wt 相比,des(-/-)肌肉表现出许多这些基因的表达升高。最大的转录变化发生在衰老和缺乏结蛋白的相互作用中,包括许多与慢纤维途径相关的基因(Myh7、Myl3、Atp2a2 和 Casq2)和胰岛素敏感性(Tlr4、Trib3、Pdk3 和 Pdk4)。与这些转录变化一致,成年 des(-/-)肌肉表现出从快肌到慢肌肌球蛋白重链同工型的显著纤维类型转变(wt,5.3% IIa 和 71.7% IIb;des(-/-),8.4% IIa 和 61.4% IIb)和胰岛素刺激的葡萄糖摄取减少(wt,0.188 μmol/g 肌肉/20 分钟;des(-/-),0.085 μmol/g 肌肉/20 分钟)。这项工作指出了这种细胞骨架蛋白的新的影响领域,并指导未来的工作以阐明其功能。