Chrome Extension
WeChat Mini Program
Use on ChatGLM

Discovery of Manassantin A Protein Targets Using Large-Scale Protein Folding and Stability Measurements.

JOURNAL OF PROTEOME RESEARCH(2016)

Cited 25|Views17
No score
Abstract
Manassantin A is a natural product that has been shown to have anticancer activity in cell-based assays, but has a largely unknown mode-of action. Described here is the use of two different energetics-based approaches to identify protein targets of manassantin A. Using the stability of proteins from rates of oxidation technique with an isobaric mass tagging strategy (iTRAQ- SPROX) and the pulse proteolysis technique with a stable isotope labeling with amino acids in cell culture strategy (SILAC-PP), over 1000 proteins in a MDA-MB-231 cell lysate grown under hypoxic conditions were assayed for manassantin A interactions (both direct and indirect). A total of 28 protein hits were identified with manassantin. A-induced thermodynamic stability changes. Two of the protein hits (filamin A and elongation factor la) were identified using both experimental approaches. The remaining 26 hit proteins were only assayed in either the iTRAQ-SPROX or the SILAC-PP experiment. The 28 potential protein targets of manassantin A identified here provide new experimental avenues along which to explore the molecular basis of manassantin A's mode of action. The current work also represents the first application iTRAQ-SPROX and SILAC-PP to the large-scale analysis of protein ligand binding interactions involving a potential anticancer drug with an unknown mode-of-action.
More
Translated text
Key words
mass spectrometry,SILAC,iTRAQ,proteomics,chemical denaturation,MDA-MB-231,SPROX,pulse proteolysis,mode-of-action,cancer,Manassantin A,Filamin A,elongation factor 1 alpha
AI Read Science
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Chat Paper
Summary is being generated by the instructions you defined