4.6 Article

In vivo measurement of synthesis rate of individual skeletal muscle mitochondrial proteins

期刊

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpendo.90586.2008

关键词

protein synthesis; two-dimensional gel electrophoresis

资金

  1. National Institutes of Health (NIH) [R01-AG-09531, R01-DK-41973, UL1-RR-024150-01]
  2. National Center for Research Resources
  3. NIH Roadmap for Medical Research
  4. David Murdock Dole Endowed Professorship

向作者/读者索取更多资源

Jaleel A, Short KR, Asmann YW, Klaus KA, Morse DM, Ford GC, Nair KS. In vivo measurement of synthesis rate of individual skeletal muscle mitochondrial proteins. Am J Physiol Endocrinol Metab 295: E1255-E1268, 2008. First published September 2, 2008; doi:10.1152/ajpendo.90586.2008. - Skeletal muscle mitochondrial dysfunction occurs in many conditions including aging and insulin resistance, but the molecular pathways of the mitochondrial dysfunction remain unclear. Presently, no methodologies are available to measure synthesis rates of individual mitochondrial proteins, which limits our ability to fully understand the translational regulation of gene transcripts. Here, we report a methodology to measure synthesis rates of multiple muscle mitochondrial proteins, which, along with large-scale measurements of mitochondrial gene transcripts and protein concentrations, will enable us to determine whether mitochondrial alteration is due to transcriptional or translational changes. The methodology involves in vivo labeling of muscle proteins with L-[ring-C-13(6)] phenylalanine, protein purification by two-dimensional gel electrophoresis of muscle mitochondrial fraction, and protein identification and stable isotope abundance measurements by tandem mass spectrometry. Synthesis rates of 68 mitochondrial and 23 non-mitochondrial proteins from skeletal muscle mitochondrial fraction showed a 10-fold range, with the lowest rate for a structural protein such as myosin heavy chain (0.16 +/- 0.04%/ h) and the highest for a mitochondrial protein such as dihydrolipoamide branched chain transacylase E2 (1.5 +/- 0.42%/h). This method offers an opportunity to better define the translational regulation of proteins in skeletal muscle or other tissues.

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