4.8 Article

Precise characterization of KRAS4b proteoforms in human colorectal cells and tumors reveals mutation/modification cross-talk

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1716122115

关键词

RAS; KRAS; posttranslational modification; top-down proteomics; immunoprecipitation

资金

  1. Federal Funds from the National Cancer Institute (Office of Cancer Clinical Proteomics Research), National Institutes of Health [HHSN261200800001E]
  2. Paul G. Allen Family Foundation [11715]
  3. National Institute of General Medical Sciences, National Institutes of Health [P41 GM108569]
  4. [CCSG P30 CA060553]
  5. [U54 CA193419]
  6. NATIONAL CANCER INSTITUTE [U54CA193419, P30CA060553] Funding Source: NIH RePORTER
  7. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [P41GM108569] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Mutations of the KRAS gene are found in human cancers with high frequency and result in the constitutive activation of its protein products. This leads to aberrant regulation of downstream pathways, promoting cell survival, proliferation, and tumorigenesis that drive cancer progression and negatively affect treatment outcomes. Here, we describe a workflow that can detect and quantify mutation-specific consequences of KRAS biochemistry, namely linked changes in post-translational modifications (PTMs). We combined immunoaffinity enrichment with detection by top-down mass spectrometry to discover and quantify proteoforms with or without the Gly13Asp mutation (G13D) specifically in the KRAS4b isoform. The workflow was applied first to isogenic KRAS colorectal cancer (CRC) cell lines and then to patient CRC tumors with matching KRAS genotypes. In two cellular models, a direct link between the knockout of the mutant G13D allele and the complete nitrosylation of cysteine 118 of the remaining WT KRAS4b was observed. Analysis of tumor samples quantified the percentage of mutant KRAS4b actually present in cancer tissue and identified major differences in the levels of C-terminal carboxymethylation, a modification critical for membrane association. These data from CRC cells and human tumors suggest mechanisms of posttranslational regulation that are highly context-dependent and which lead to preferential production of specific KRAS4b proteoforms.

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