共查询到20条相似文献,搜索用时 15 毫秒
1.
2.
PGC-1alpha, a transcriptional coactivator involved in metabolism 总被引:1,自引:0,他引:1
3.
4.
5.
6.
7.
8.
9.
10.
PGC-1alpha integrates insulin signaling, mitochondrial regulation, and bioenergetic function in skeletal muscle 总被引:1,自引:0,他引:1
Pagel-Langenickel I Bao J Joseph JJ Schwartz DR Mantell BS Xu X Raghavachari N Sack MN 《The Journal of biological chemistry》2008,283(33):22464-22472
The pathophysiology underlying mitochondrial dysfunction in insulin-resistant skeletal muscle is incompletely characterized. To further delineate this we investigated the interaction between insulin signaling, mitochondrial regulation, and function in C2C12 myotubes and in skeletal muscle. In myotubes elevated insulin and glucose disrupt insulin signaling, mitochondrial biogenesis, and mitochondrial bioenergetics. The insulin-sensitizing thiazolidinedione pioglitazone restores these perturbations in parallel with induction of the mitochondrial biogenesis regulator PGC-1alpha. Overexpression of PGC-1alpha rescues insulin signaling and mitochondrial bioenergetics, and its silencing concordantly disrupts insulin signaling and mitochondrial bioenergetics. In primary skeletal myoblasts pioglitazone also up-regulates PGC-1alpha expression and restores the insulin-resistant mitochondrial bioenergetic profile. In parallel, pioglitazone up-regulates PGC-1alpha in db/db mouse skeletal muscle. Interestingly, the small interfering RNA knockdown of the insulin receptor in C2C12 myotubes down-regulates PGC-1alpha and attenuates mitochondrial bioenergetics. Concordantly, mitochondrial bioenergetics are blunted in insulin receptor knock-out mouse-derived skeletal myoblasts. Taken together these data demonstrate that elevated glucose and insulin impairs and pioglitazone restores skeletal myotube insulin signaling, mitochondrial regulation, and bioenergetics. Pioglitazone functions in part via the induction of PGC-1alpha. Moreover, PGC-1alpha is identified as a bidirectional regulatory link integrating insulin-signaling and mitochondrial homeostasis in skeletal muscle. 相似文献
11.
12.
13.
Modulation of estrogen receptor-alpha transcriptional activity by the coactivator PGC-1 总被引:7,自引:0,他引:7
Tcherepanova I Puigserver P Norris JD Spiegelman BM McDonnell DP 《The Journal of biological chemistry》2000,275(21):16302-16308
14.
Stiber J Hawkins A Zhang ZS Wang S Burch J Graham V Ward CC Seth M Finch E Malouf N Williams RS Eu JP Rosenberg P 《Nature cell biology》2008,10(6):688-697
It is now well established that stromal interaction molecule 1 (STIM1) is the calcium sensor of endoplasmic reticulum stores required to activate store-operated calcium entry (SOC) channels at the surface of non-excitable cells. However, little is known about STIM1 in excitable cells, such as striated muscle, where the complement of calcium regulatory molecules is rather disparate from that of non-excitable cells. Here, we show that STIM1 is expressed in both myotubes and adult skeletal muscle. Myotubes lacking functional STIM1 fail to show SOC and fatigue rapidly. Moreover, mice lacking functional STIM1 die perinatally from a skeletal myopathy. In addition, STIM1 haploinsufficiency confers a contractile defect only under conditions where rapid refilling of stores would be needed. These findings provide insight into the role of STIM1 in skeletal muscle and suggest that STIM1 has a universal role as an ER/SR calcium sensor in both excitable and non-excitable cells. 相似文献
15.
16.
17.
PGC-1alpha deficiency causes multi-system energy metabolic derangements: muscle dysfunction, abnormal weight control and hepatic steatosis 下载免费PDF全文
Leone TC Lehman JJ Finck BN Schaeffer PJ Wende AR Boudina S Courtois M Wozniak DF Sambandam N Bernal-Mizrachi C Chen Z Holloszy JO Medeiros DM Schmidt RE Saffitz JE Abel ED Semenkovich CF Kelly DP 《PLoS biology》2005,3(4):e101
18.
19.
Effects of changes of pH on the contractile function of cardiac muscle 总被引:29,自引:0,他引:29