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Summary
Oct 2005, Vol. 2, No. 5, Pages 781-792
, DOI 10.1586/14789450.2.5.781
(doi:10.1586/14789450.2.5.781)
Review Understanding protein trafficking in plant cells through proteomics Songqin Pan, Clay J Carter & Natasha V Raikhel† † Author for correspondence The functions of approximately one-third of the proteins encoded by the Arabidopsis thaliana genome are completely unknown. Moreover, many annotations of the remainder of the genome supply tentative functions, at best. Knowing the ultimate localization of these proteins, as well as the pathways used for getting there, may provide clues as to their functions. The putative localization of most proteins currently relies on in silico-based bioinformatics approaches, which, unfortunately, often result in erroneous predictions. Emerging proteomics techniques coupled with other systems biology approaches now provide researchers with a plethora of methods for elucidating the final location of these proteins on a large scale, as well as the ability to dissect protein-sorting pathways in plants.
Cited byDustin Lippert, Mack Yuen, Jörg Bohlmann. (2009) Spruce proteome DB: a resource for conifer proteomics research. Tree Genetics & Genomes Online publication date: 24-Jul-2009. CrossRef Sacha Baginsky. (2009) Plant proteomics: Concepts, applications, and novel strategies for data interpretation. Mass Spectrometry Reviews 28:1, 93-120 Online publication date: 1-Feb-2009. CrossRef Jesús V. Jorrín, Ana M. Maldonado, Ma Angeles Castillejo. (2007) Plant proteome analysis: A 2006 update. PROTEOMICS 7:16, 2947-2962 Online publication date: 1-Sep-2007. CrossRef Michel Rossignol, Jean-Benoît Peltier, Hans-Peter Mock, Andrea Matros, Ana M. Maldonado, Jesús V. Jorrín. (2006) Plant proteome analysis: A 2004–2006 update. PROTEOMICS 6:20, 5529-5548 Online publication date: 1-Nov-2006. CrossRef
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