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Large-scale protein identification of human urine proteome by multi-dimensional LC and MS/MS

  • Yi Ting Chen
  • , Chao Yun Tsao
  • , Jen Ming Li
  • , Chih Yen Tsai
  • , Su Feng Chiu
  • , Tzu Ling Tseng*
  • *Corresponding author for this work
  • Industrial Technology Research Institute of Taiwan

Research output: Contribution to journalJournal Article peer-review

18 Scopus citations

Abstract

Urine is a human specimen that is easily obtained non-invasively for clinical diagnosis. We attempted to enhance the resolution of current human urine proteomes and construct a comprehensive reference database for advanced studies, such as the discovery of biomarkers for renal diseases. Multi-dimensional. LC-MS/MS was coupled with de novo sequencing and database matching. The proposed approach improved the identification of not only the proteins, but also the post-translational sites of urinary proteins. We identified 165, 200 and 259 unique gene products in the urine proteornes from males, females and pregnant women, respectively. When all of the results were combined and the redundancies removed, a total of 1095 distinct peptides were identified. Of these, 1016 peptides were associated with 334 unique gene products. In this study, over 100 gene products, including some disease-related proteins, were detected in urine for the first time by proteomic: approaches. Various proteins with novel post-translational hydroxylation were identified using the MASCOT program and de novo sequencing. All proteins with peptide information were summarized into a comprehensive urine protein database. We believe that this comprehensive urine proteome database will assist in the identification of urinary proteins/ polypeptides whose spectra are difficult to interpret in the discovery of urinary biomarkers.

Original languageEnglish
Pages (from-to)577-587
Number of pages11
JournalProteomics - Clinical Applications
Volume1
Issue number6
DOIs
StatePublished - 06 2007
Externally publishedYes

Keywords

  • Body fluids
  • Human urine proteome
  • Hydroxylation
  • Post-translational modification
  • Pregnant woman

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