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Proteogenomic analysis of Candida glabrata using high resolution mass spectrometry.

Authors :
Prasad, T.S.
Harsha, H.C.
Keerthikumar, S.
Sekhar, N.R.
Selvan, L.D.N.
Kumar, P.
Pinto, S.M.
Muthusamy, B.
Subbannayya, Y.
Renuse, S.
Chaerkady, R.
Mathur, P.P.
Ravikumar, R.
Pandey, A.
Prasad, T.S.
Harsha, H.C.
Keerthikumar, S.
Sekhar, N.R.
Selvan, L.D.N.
Kumar, P.
Pinto, S.M.
Muthusamy, B.
Subbannayya, Y.
Renuse, S.
Chaerkady, R.
Mathur, P.P.
Ravikumar, R.
Pandey, A.
Source :
Journal of Proteome Research; 247; 60; 1535-3893; 1; 11; ~Journal of Proteome Research~247~60~~~1535-3893~1~11~~
Publication Year :
2012

Abstract

Item does not contain fulltext<br />Candida glabrata is a common opportunistic human pathogen leading to significant mortality in immunosuppressed and immunodeficient individuals. We carried out proteomic analysis of C. glabrata using high resolution Fourier transform mass spectrometry with MS resolution of 60,000 and MS/MS resolution of 7500. On the basis of 32,453 unique peptides identified from 118,815 peptide-spectrum matches, we validated 4421 of the 5283 predicted protein-coding genes (83%) in the C. glabrata genome. Further, searching the tandem mass spectra against a six frame translated genome database of C. glabrata resulted in identification of 11 novel protein coding genes and correction of gene boundaries for 14 predicted gene models. A subset of novel protein-coding genes and corrected gene models were validated at the transcript level by RT-PCR and sequencing. Our study illustrates how proteogenomic analysis enabled by high resolution mass spectrometry can enrich genome annotation and should be an integral part of ongoing genome sequencing and annotation efforts.

Details

Database :
OAIster
Journal :
Journal of Proteome Research; 247; 60; 1535-3893; 1; 11; ~Journal of Proteome Research~247~60~~~1535-3893~1~11~~
Publication Type :
Electronic Resource
Accession number :
edsoai.on1377170631
Document Type :
Electronic Resource