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Divergent proteome tolerance against gain and loss of chromosome arms
Keywords aneuploidy proteomics dynamic SILAC protein degradation protein synthesis proteostasis gain and loss chromosome 3 lung cancer proteomic buffering Introduction Aneuploidy, defined as the abnormal gain or loss of chromosomes or chromosome arms, is a hallmark of human genetic syndromes and many cancers.1,2,3 While somatic aneuploidy is rare in healthy human tissues,4,5 it is highly prevalent in cancer, with 90% of solid tumors exhibiting aneuploidy.3 This contributes to tumor...
Turnover atlas of proteome and phosphoproteome across mouse tissues and brain regions
Keywords protein turnover protein lifetime mouse tissues brain regions proteomics pulse SILAC protein phosphorylation DIA-MS TMT Get full text access Log in, subscribe or purchase for full access. References 1. Glass, R.D. ∙ Doyle, D. On the measurement of protein turnover in animal cells J. Biol. Chem. 1972; 247:5234-5242 2. Pratt, J.M. ∙ Petty, J. ∙ Riba-Garcia, I. ... Dynamics of protein turnover, a missing dimension in proteomics Mol. Cell. Proteomics. 2002; 1:579-591 3. Claydon, A.J. ∙ Beynon, R.
A Comprehensive and Robust Multiplex-DIA Workflow Profiles Protein Turnover Regulations Associated with Cisplatin Resistance
Abstract Measuring protein turnover is essential for understanding cellular biological processes and advancing drug discovery. The multiplex DIA mass spectrometry (DIA-MS) approach, combined with dynamic SILAC labeling (pulse-SILAC, or pSILAC), has proven to be a reliable method for analyzing protein turnover and degradation kinetics.
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