Department of Biomedical Sciences, College of Veterinary Medicine, University of Missouri, Columbia, MO 65211, USA.
J Appl Physiol (1985). 2012 Apr;112(8):1291-9. doi: 10.1152/japplphysiol.01419.2011. Epub 2012 Jan 26.
The wheel-lock (WL) model for depressed ambulatory activity in rats has shown metabolic maladies ensuing within 53-173 h after WL begins. We sought to determine if WL beginning after 21-23 days of voluntary running in growing female Wistar rats affected the mRNA profile in the polyribosomal fraction from plantaris muscle shortly following WL. In experiment 1, WL occurred at 0200 and muscles were harvested at 0700 daily at 5 h (WL5h, n = 4), 29 h (WL29h, n = 4), or 53 h (WL53h, n = 4) after WL. Affymetrix Rat Gene 1.0 ST Arrays were used to test the initial question as to whether WL affects mRNA occupancy on skeletal muscle polyribosomes. Using a false discovery rate of 15%, no changes in mRNAs in the polyribosomal fraction were observed at WL29h and eight mRNAs (of over 8,200 identified targets) were altered at WL53h compared with WL5h. Interestingly, two of the six downregulated genes included ankyrin repeat domain 2 (Ankrd2) and cysteine-rich protein 3/muscle LIM protein (Csrp3), both of which encode mechanical stretch sensors and RT-PCR verified their WL-induced decline. In experiment 2, whole muscle mRNA and protein levels were analyzed for Ankrd2 and Csrp3 from the muscles of WL5h (4 original samples + 2 new), WL29h (4 original), WL53h (4 original + 2 new), as well as WL173 h (n = 6 new) and animals that never ran (SED, 4-5 new). Relative to WL5h controls, whole tissue Ankrd2 and Csrp3 mRNAs were lower (P < 0.05) at WL53h, WL173h, and SED; Ankrd2 protein tended to decrease at WL53h (P = 0.054) and Csrp3 protein was less in WL173h and SED rats (P < 0.05). In summary, unique early declines in Ankrd2 and Csrp3 mRNAs were identified with removal of voluntary running, which was subsequently followed by declines in Csrp3 protein levels during longer periods of wheel lock.
轮锁(WL)模型可在 WL 开始后 53-173 小时内导致抑郁性活动的代谢紊乱。我们试图确定在生长中的雌性 Wistar 大鼠进行 21-23 天自愿跑步后开始 WL 是否会影响 WL 后不久的比目鱼肌多核糖体部分中的 mRNA 谱。在实验 1 中,WL 于 0200 开始,肌肉每天于 0700 收获,在 WL 后 5 小时(WL5h,n=4)、29 小时(WL29h,n=4)或 53 小时(WL53h,n=4)时进行。使用 Affymetrix Rat Gene 1.0 ST Arrays 来测试 WL 是否影响骨骼肌多核糖体上的 mRNA 占据的初始问题。使用错误发现率为 15%,在 WL29h 时未观察到多核糖体部分中的 mRNAs 发生变化,而与 WL5h 相比,有 8 个 mRNAs(超过 8200 个鉴定的靶标)在 WL53h 时发生变化。有趣的是,下调的 6 个基因中有两个是肌球蛋白结合重复域 2(Ankrd2)和富含半胱氨酸的蛋白质 3/肌肉 LIM 蛋白(Csrp3),这两个基因都编码机械拉伸传感器,RT-PCR 验证了它们在 WL 诱导下的下降。在实验 2 中,分析了 WL5h(4 个原始样本+2 个新样本)、WL29h(4 个原始样本)、WL53h(4 个原始样本+2 个新样本)以及 WL173h(n=6 个新样本)和从未跑步的动物(SED,4-5 个新样本)的肌肉中的 Ankrd2 和 Csrp3 的全肌肉 mRNA 和蛋白质水平。与 WL5h 对照相比,Ankrd2 和 Csrp3 的整个组织 mRNA 在 WL53h、WL173h 和 SED 时降低(P<0.05);Ankrd2 蛋白在 WL53h 时趋于下降(P=0.054),而 Csrp3 蛋白在 WL173h 和 SED 大鼠中减少(P<0.05)。总之,在自愿跑步停止后,Ankrd2 和 Csrp3 的 mRNA 出现了独特的早期下降,随后在更长时间的轮锁期间,Csrp3 蛋白水平下降。