Technical aspects of functional proteomics in plants |
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Authors: | Hirano Hisashi Islam Nazrul Kawasaki Hiroshi |
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Affiliation: | a Kihara Institute for Biological Research, Yokohama City University, Yokohama 244-0813, Japan b CSIRO Entomology, Canberra, ACT 2601, Australia |
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Abstract: | Since the completion of genome sequences of several organisms, attention has been focused to determine the function and functional network of proteins by proteome analysis. This analysis is achieved by separation and identification of proteins, determination of their function and functional network, and construction of an appropriate database. Many improvements in separation and identification of proteins, such as two-dimensional electrophoresis, nano-liquid chromatography and mass spectrometry, have rapidly been achieved. Some new techniques which include top-down mass spectrometry and tandem affinity purification have emerged. These techniques have provided the possibility of high-throughput analysis of function and functional network of proteins in plants. However, to cope with the huge information emerging from proteome analyses, more sophisticated techniques and software are essential. The development and adaptation of such techniques will ease analyses of protein profiling, identification of post-translational modifications and protein-protein interaction, which are vital for elucidation of the protein functions. |
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Keywords: | DIGE, differential in-gel electrophoresis ESI, electrospray ionization FT MS, Fourier transform ion cyclotron resonance mass spectrometry GFP, green fluorescent protein GPI, glycosylphosphatidylinositol ICAT, isotope-coded affinity tag IT MS, ion trap mass spectrometer LC, liquid chromatography MALDI, matrix assisted laser desorption ionization MS, mass spectrometry Q MS, quadrupole mass spectrometer SELDI, surface enhanced laser desorption ionization SPR, surface plasmon resonance TAP, tandem affinity purification TOF, time-of-flight 2-DE, two-dimensional electrophoresis |
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