Literature DB >> 21142092

Hexapeptide libraries for enhanced protein PTM identification and relative abundance profiling in whole human saliva.

Sricharan Bandhakavi1, Susan K Van Riper, Pierre N Tawfik, Matthew D Stone, Tufia Haddad, Nelson L Rhodus, John V Carlis, Timothy J Griffin.   

Abstract

Dynamic range compression (DRC) by hexapeptide libraries increases MS/MS-based identification of lower-abundance proteins in complex mixtures. However, two unanswered questions impede fully realizing DRC's potential in shotgun proteomics. First, does DRC enhance identification of post-translationally modified proteins? Second, can DRC be incorporated into a workflow enabling relative protein abundance profiling? We sought to answer both questions analyzing human whole saliva. Addressing question one, we coupled DRC with covalent glycopeptide enrichment and MS/MS. With DRC we identified ∼2 times more N-linked glycoproteins and their glycosylation sites than without DRC, dramatically increasing the known salivary glycoprotein catalog. Addressing question two, we compared differentially stable isotope-labeled saliva samples pooled from healthy and metastatic breast cancer women using a multidimensional peptide fractionation-based workflow, analyzing in parallel one sample portion with DRC and one portion without. Our workflow categorizes proteins with higher absolute abundance, whose relative abundance ratios are altered by DRC, from proteins of lower absolute abundance detected only after DRC. Within each of these salivary protein categories, we identified novel abundance changes putatively associated with breast cancer, demonstrating feasibility and benefits of DRC for relative abundance profiling. Collectively, our results bring us closer to realizing the full potential of DRC for proteomic studies.

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Year:  2011        PMID: 21142092      PMCID: PMC3049962          DOI: 10.1021/pr100857t

Source DB:  PubMed          Journal:  J Proteome Res        ISSN: 1535-3893            Impact factor:   4.466


  46 in total

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Review 10.  Roles of N-linked glycans in the endoplasmic reticulum.

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  16 in total

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4.  Large-scale phosphoproteomics analysis of whole saliva reveals a distinct phosphorylation pattern.

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5.  Oral fluids that detect cardiovascular disease biomarkers.

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9.  Mass spectrometry-based analyses showing the effects of secretor and blood group status on salivary N-glycosylation.

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10.  Analysis of age and gender associated N-glycoproteome in human whole saliva.

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