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Ivo Fierro-Monti

Explore the profile of Ivo Fierro-Monti including associated specialties, affiliations and a list of published articles. Areas
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Recent Articles
1.
Wacholder A, Deutsch E, Kok L, van Dinter J, Lee J, Wright J, et al.
bioRxiv . 2025 Mar; PMID: 40027765
Thousands of short open reading frames (sORFs) are translated outside of annotated coding sequences. Recent studies have pioneered searching for sORF-encoded microproteins in mass spectrometry (MS)-based proteomics and peptidomics datasets....
2.
Fierro-Monti I, Frohlich K, Schori C, Schmidt A
Proteomes . 2024 Nov; 12(4). PMID: 39585120
Proteogenomics integrates genomic and proteomic data to elucidate cellular processes by identifying variant peptides, including single amino acid variants (SAAVs). In this study, we assessed the capability of data-independent acquisition...
3.
Deutsch E, Kok L, Mudge J, Ruiz-Orera J, Fierro-Monti I, Sun Z, et al.
bioRxiv . 2024 Sep; PMID: 39314370
A major scientific drive is to characterize the protein-coding genome as it provides the primary basis for the study of human health. But the fundamental question remains: what has been...
4.
Fierro-Monti I
Front Mol Biosci . 2024 Aug; 11:1454241. PMID: 39165644
RNA-binding proteins (RBPs) play a key role in gene expression and post-transcriptional RNA regulation. As integral components of ribonucleoprotein complexes, RBPs are susceptible to genomic and RNA Editing derived amino...
5.
Fierro-Monti I, Wright J, Choudhary J, Vizcaino J
Front Mol Biosci . 2022 Dec; 9:1062031. PMID: 36523653
Multi-omics approaches including proteomics analyses are becoming an integral component of precision medicine. As clinical proteomics studies gain momentum and their sensitivity increases, research on identifying individuals based on their...
6.
Carvalho A, Moraes M, Na C, Fierro-Monti I, Henriques A, Zahedi S, et al.
Cancers (Basel) . 2020 Nov; 12(11). PMID: 33233545
Acellular bronchoalveolar lavage (BAL) proteomics can partially separate lung cancer from non-lung cancer patients based on principal component analysis and multivariate analysis. Furthermore, the variance in the proteomics data sets...
7.
Caron E, Roncagalli R, Hase T, Wolski W, Choi M, Menoita M, et al.
Cell Rep . 2017 Mar; 18(13):3219-3226. PMID: 28355572
Spatiotemporal organization of protein interactions in cell signaling is a fundamental process that drives cellular functions. Given differential protein expression across tissues and developmental stages, the architecture and dynamics of...
8.
Fierro-Monti I, Echeverria P, Racle J, Hernandez C, Picard D, Quadroni M
PLoS One . 2013 Dec; 8(11):e80425. PMID: 24312219
The molecular chaperone Hsp90-dependent proteome represents a complex protein network of critical biological and medical relevance. Known to associate with proteins with a broad variety of functions termed clients, Hsp90...
9.
Fierro-Monti I, Racle J, Hernandez C, Waridel P, Hatzimanikatis V, Quadroni M
PLoS One . 2013 Dec; 8(11):e80423. PMID: 24312217
Standard proteomics methods allow the relative quantitation of levels of thousands of proteins in two or more samples. While such methods are invaluable for defining the variations in protein concentrations...
10.
Fierro-Monti I, Mohammed S, Matthiesen R, Santoro R, Burns J, Williams D, et al.
J Proteome Res . 2006 Jun; 5(6):1367-78. PMID: 16739988
Protein complexes are dynamic entities; identification and quantitation of their components is critical in elucidating functional roles under specific cellular conditions. We report the first quantitative proteomic analysis of the...