Effect on Differentially Expressed Proteins in Rat BMSCs Intervened by Active Principle Region of Yangxin Tongmai Formula by iTRAQ Combined with Mass Spectrometry
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Effect on Differentially Expressed Proteins in Rat BMSCs Intervened by Active Principle Region of Yangxin Tongmai Formula by iTRAQ Combined with Mass Spectrometry
Chinese Journal of Experimental Traditional Medical FormulaeVol. 21, Issue 20, Pages: 107-112(2015)
ZHENG Jing-hui, HUANG Long-jian, WU Xin-zheng, et al. Effect on Differentially Expressed Proteins in Rat BMSCs Intervened by Active Principle Region of Yangxin Tongmai Formula by iTRAQ Combined with Mass Spectrometry[J]. Chinese journal of experimental traditional medical formulae, 2015, 21(20): 107-112.
DOI:
ZHENG Jing-hui, HUANG Long-jian, WU Xin-zheng, et al. Effect on Differentially Expressed Proteins in Rat BMSCs Intervened by Active Principle Region of Yangxin Tongmai Formula by iTRAQ Combined with Mass Spectrometry[J]. Chinese journal of experimental traditional medical formulae, 2015, 21(20): 107-112. DOI: 10.13422/j.cnki.syfjx.2015200107.
Effect on Differentially Expressed Proteins in Rat BMSCs Intervened by Active Principle Region of Yangxin Tongmai Formula by iTRAQ Combined with Mass Spectrometry
Objective: To analyze the effective protein of bone mesenchymal stem cells (BMSCs) intervened by active principle region of Yangxin Tongmai formula (apr-YTF) using the proteomics technology of isobaric tags for relative and absolute quantitation (iTRAQ). Method: SD rats received apr-YTF 31.08 g·kg-1 for 5 days and used the drug-containing serum in rats with equivalent normal saline as blank control group. 5 days later
drug-containing serum was taken to intervene BMSCs
then cell membrane proteins were extracted
matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS) was used to screen and identify the differentially expressed proteins
and bioinformatics analysis was conducted. Result: The 236 proteins and 62 differentially expressed proteins were identified
including 48 up-regulating proteins and 14 down-regulating proteins. These proteins are mainly involved in 102 kinds of biological processes
35 kinds of cell components
6 kinds of molecular pathways and 3 signal transduction pathways. These proteins interact in the three signal transduction pathways. Conclusion: The following proteins and signal transduction pathways play an important role in the process of apr-YTF to induce BMSCs differentiation into cardiomyocytes:presenilin-1
presenilin-2 in the Notch signaling pathway
syntaxin-4 protein in soluble N-ethyl maleimide sensitive fusion protein attachment protein (SNARE)
and mitogen-activated protein kinase 12 (MAPK 12) in the MAPK signaling pathway.