The use of isotope-coded affinity tags (ICAT) to study organelle proteomes in Arabidopsis thaliana
Tom Dunkley, Paul Dupree, Rod B. Watson, Kathryn S. Lilley
Abstract
Tom Dunkley, Paul Dupree, Rod B. Watson, Kathryn S. Lilley
Abstract
Organelle proteomics is the analysis of the protein contents of a subcellular compartment. Proteins identified in subcellular proteomic studies can only be assigned to an organelle if there are no contaminants present in the sample preparation. As a result, the majority of plant organelle proteomic studies have focused on the chloroplast and mitochondria, which can be isolated relatively easily. However, the isolation of components of the endomembrane system is far more difficult due to their similar sizes and densities. For this reason, quantitative proteomics methods are being developed to enable the assignment of proteins to a specific component of the endomembrane system without the need to obtain pure organelles.
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Organelle proteomics is the analysis of the protein contents of a subcellular compartment. Proteins identified in subcellular proteomic studies can only be assigned to an organelle if there are no contaminants present in the sample preparation. As a result, the majority of plant organelle proteomic studies have focused on the chloroplast and mitochondria, which can be isolated relatively easily. However, the isolation of components of the endomembrane system is far more difficult due to their similar sizes and densities. For this reason, quantitative proteomics methods are being developed to enable the assignment of proteins to a specific component of the endomembrane system without the need to obtain pure organelles.
Key concepts: Organelle, Proteome, Endomembrane system, Proteomics, Quantitative proteomics, Arabidopsis thaliana, Biology, Computational biology