Department of Exercise Science, High Point University, One University Parkway, High Point, NC, 27268, USA.
Department of Kinesiology, California Baptist University, Riverside, 92504, CA, USA.
Cell Stress Chaperones. 2018 Sep;23(5):871-883. doi: 10.1007/s12192-018-0894-1. Epub 2018 Apr 11.
This work investigated the effect of a 6-day heat acclimation (HA) protocol on myotube metabolic responses at baseline and in response to a subsequent lipopolysaccharide (LPS) challenge. C2C12 myotubes were incubated for 2 h/day at 40 °C for 6 days (HA) or maintained at 37 °C (C). Following 24-h recovery, myotubes were challenged with 500 ng/ml LPS for 2 h, then collected for analysis of protein markers of mitochondrial biogenesis and macronutrient storage. Functional significance of these changes was confirmed with mitochondrial respiration and glycolytic measurements on a Seahorse XF-96 analyzer. HA stimulated mitochondrial biogenesis and increased indicators of mitochondrial content [SIRT1 (+ 62%); PGC-1α (+ 57%); NRF-1 (+ 40%); TFAM (+ 141%); CS (+ 25%); CytC (+ 38%); all p < 0.05]. Altered lipid biosynthesis enzymes [p-ACCa:ACC (+ 59%; p = 0.04) and FAS (- 86%; p < 0.01)] suggest fatty acid generation may have been downregulated, whereas increased GLUT4 (+ 69%; p < 0.01) and LDH-B (+ 366%; p < 0.01) suggest aerobic glycolytic capacity may have been improved. Mitochondrial biogenesis signaling in HA myotubes was suppressed by 500 ng/ml LPS (PGC-1α, NRF-1, TFAM; all p > 0.05) but increased LDH-B (+ 30%; p = 0.02) and CPT-1 (+ 55%; p < 0.01) suggesting improved catabolic function. Basal respiration was increased in HA myotubes (+ 8%; p < 0.01) and HA myotubes maintained elevated basal respiration during LPS challenge (+ 8%; p < 0.01). LPS reduced peak respiration in C myotubes (- 6%; p < 0.01) but did not impair peak respiration in HA myotubes (p > 0.05). Oxidative reliance was elevated in HA over that in control (+ 25%; p < 0.01) and in HA + LPS over C + LPS (+ 30%; p < 0.01). In summary, HA stimulated mitochondrial biogenesis in C2C12 myotubes. HA myotubes exhibited (1) elevated basal/peak mitochondrial respiration capacities; (2) greater oxidative reliance; and (3) protection against LPS-mediated respiration impairment. Collectively, these data suggest HA may improve aerobic metabolism in skeletal muscle and protect against LPS-mediated energy deficit.
本研究旨在探讨 6 天热适应(HA)方案对肌管基础状态和随后脂多糖(LPS)刺激时代谢反应的影响。C2C12 肌管每天在 40°C 下孵育 2 小时,持续 6 天(HA)或在 37°C 下孵育(C)。24 小时恢复后,用 500ng/ml LPS 刺激肌管 2 小时,然后收集肌管用于分析线粒体生物发生和宏量营养素储存的蛋白标志物。通过 Seahorse XF-96 分析仪进行线粒体呼吸和糖酵解测量,证实了这些变化的功能意义。HA 刺激线粒体生物发生,并增加线粒体含量的指标[SIRT1(+62%;p<0.05);PGC-1α(+57%;p<0.05);NRF-1(+40%;p<0.05);TFAM(+141%;p<0.05);CS(+25%;p<0.05);CytC(+38%;p<0.05)]。改变的脂质生物合成酶[乙酰辅酶 A羧化酶(p-ACCa:ACC;+59%;p=0.04)和脂肪酸合酶(FAS;-86%;p<0.01)]表明脂肪酸生成可能受到抑制,而 GLUT4(+69%;p<0.01)和 LDH-B(+366%;p<0.01)的增加表明有氧糖酵解能力可能得到改善。HA 肌管中的线粒体生物发生信号被 500ng/ml LPS 抑制(PGC-1α、NRF-1、TFAM;均 p>0.05),但 LDH-B(+30%;p=0.02)和 CPT-1(+55%;p<0.01)的增加表明分解代谢功能得到改善。HA 肌管的基础呼吸增加(+8%;p<0.01),并且在 LPS 刺激期间 HA 肌管维持基础呼吸升高(+8%;p<0.01)。LPS 降低 C 肌管的峰值呼吸(-6%;p<0.01),但不会损害 HA 肌管的峰值呼吸(p>0.05)。HA 中的氧化依赖度高于对照(+25%;p<0.01),并且在 HA+LPS 中高于 C+LPS(+30%;p<0.01)。总之,HA 刺激 C2C12 肌管中的线粒体生物发生。HA 肌管表现出(1)升高的基础/峰值线粒体呼吸能力;(2)更高的氧化依赖度;和(3)对 LPS 介导的呼吸损伤的保护作用。这些数据表明,HA 可能改善骨骼肌的有氧代谢,并防止 LPS 介导的能量不足。