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Probing the dynamic nature of signalling pathways by IMAC and SELDI-tof MS

Abstract : One major obstacle to the analysis of signalling pathways is the dynamic nature of signalling response to environmental stimuli. To overcome this limitation we applied immobilized metal affinity chromatography (IMAC) in combination with SELDI-tof MS to investigate the temporal variation of protein phosphorylation. We analysed the phospho-proteome variations in our model organism, Leishmania donovani, in response to changes in pH and temperature, which induce differentiation from promastigotes to amastigotes. Investigation of total cell extracts did not allow promastigote and amastigote life cycle stages to be distinguished. However, using IMAC enriched samples, the pattern and intensity of phospho-proteins analysed distinguished both stages reproducibly. Approximately 61% of the phospho-proteins analysed were significantly different in abundance (p\textless0.02). Of these 61%, 73% showed an increased phosphorylation in promastigotes while 27% showed an increase phosphorylation in amastigotes. The workflow developed is currently being applied to the temporal analysis of environmental stimuli.
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Submitted on : Thursday, January 12, 2017 - 5:10:02 PM
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Aude L. Foucher, Gerald F Späth, Iain K. Pemberton. Probing the dynamic nature of signalling pathways by IMAC and SELDI-tof MS. Archives of Physiology and Biochemistry, 2010, 116 (4-5), pp.163-173. ⟨10.3109/13813455.2010.495129⟩. ⟨pasteur-01433568⟩



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