Proteomics

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DNMT DKO proteomic analyses - A proteogenomics approach integrating proteomics and ribosome profiling increases the efficiency of protein identification and enables the discovery of alternative translation start sites


ABSTRACT: This study aimed to investigate the link between DNA methylation and protein expression on a genome wide level, using a combination of MBD-sequencing and shotgun and positional proteomics on two human colon cancer cell lines: a wild type HCT116 cell line and a double knock out HCT116 cell line (DNMT1 -/- and DNMT3b -/-). The protein content of the HCT116 WT and DKO cell lines was not only analyzed using a standard shotgun proteomics approach, but also with the N-terminal COFRADIC technique (Staes et al., 2011), in order to determine the (alternative) translation start site of the expressed proteins.

INSTRUMENT(S): LTQ Orbitrap Velos, instrument model

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Colorectal Cancer Cell

SUBMITTER: Jolien Hollebeke  

PROVIDER: PXD000304 | Pride | 2015-08-19

REPOSITORIES: Pride

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A proteogenomics approach integrating proteomics and ribosome profiling increases the efficiency of protein identification and enables the discovery of alternative translation start sites.

Koch Alexander A   Gawron Daria D   Steyaert Sandra S   Ndah Elvis E   Crappé Jeroen J   De Keulenaer Sarah S   De Meester Ellen E   Ma Ming M   Shen Ben B   Gevaert Kris K   Van Criekinge Wim W   Van Damme Petra P   Menschaert Gerben G  

Proteomics 20141002 23-24


Next-generation transcriptome sequencing is increasingly integrated with MS to enhance MS-based protein and peptide identification. Recently, a breakthrough in transcriptome analysis was achieved with the development of ribosome profiling (ribo-seq). This technology is based on the deep sequencing of ribosome-protected mRNA fragments, thereby enabling the direct observation of in vivo protein synthesis at the transcript level. In order to explore the impact of a ribo-seq-derived protein sequence  ...[more]

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