Literature DB >> 15025994

Peptidomics.

Geert Baggerman1, Peter Verleyen, Elke Clynen, Jurgen Huybrechts, Arnold De Loof, Liliane Schoofs.   

Abstract

Peptides occur in the whole animal kingdom, from the least evolved phyla with a very simple nervous system (coelenterates) to the highest vertebrates and are involved in most, if not all, physiological processes in animals. Knowing the amino acid sequence of peptide hormones or neurotransmitters is important since this allows for synthesis of large quantities of peptides to perform further functional analysis. Immunocytochemistry, radioimmunoassays (RIA), enzyme-linked immunosorbant assays (ELISA) and mass spectrometry can then provide information on the temporal and spatial distribution and quantification of the (neuro)peptide. Ever since the 1970s, a wealth of peptides has been discovered and investigated and this flow seems to be far from over. This is partially due to the use of new approaches mainly based on chromatographical purifications as well as molecular biological techniques. Surprisingly, peptides have so far been neglected in most proteomic studies. The finalization of the genome projects has opened new opportunities for rapid identification and functional analysis of (neuro)peptides as well. In analogy with the proteomics technology, where all proteins expressed in a cell or tissue are analyzed, the peptidomic approach aims at the simultaneous visualization and identification of the whole peptidome of a cell or tissue, i.e. all expressed peptides with their post-translational modifications (PTMs). This technology provides us with a fast and efficient tool to analyze the peptides from any tissue. This paper reviews the approaches that have been used so far to achieve this.

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Year:  2004        PMID: 15025994     DOI: 10.1016/j.jchromb.2003.07.019

Source DB:  PubMed          Journal:  J Chromatogr B Analyt Technol Biomed Life Sci        ISSN: 1570-0232            Impact factor:   3.205


  27 in total

1.  Peptidomic analysis of HEK293T cells: effect of the proteasome inhibitor epoxomicin on intracellular peptides.

Authors:  Lloyd D Fricker; Julia S Gelman; Leandro M Castro; Fabio C Gozzo; Emer S Ferro
Journal:  J Proteome Res       Date:  2012-02-16       Impact factor: 4.466

2.  Combining capillary electrophoresis matrix-assisted laser desorption/ionization mass spectrometry and stable isotopic labeling techniques for comparative crustacean peptidomics.

Authors:  Junhua Wang; Yuzhuo Zhang; Feng Xiang; Zichuan Zhang; Lingjun Li
Journal:  J Chromatogr A       Date:  2010-03-06       Impact factor: 4.759

3.  Quantitative peptidomics in mice: effect of cocaine treatment.

Authors:  Fa-Yun Che; Ilona Vathy; Lloyd D Fricker
Journal:  J Mol Neurosci       Date:  2006       Impact factor: 3.444

Review 4.  Proteomic discovery of diabetic nephropathy biomarkers.

Authors:  Michael L Merchant; Jon B Klein
Journal:  Adv Chronic Kidney Dis       Date:  2010-11       Impact factor: 3.620

5.  Semi-quantitative analysis of changes in the plasma peptidome of Manduca sexta larvae and their correlation with the transcriptome variations upon immune challenge.

Authors:  Shuguang Zhang; Xiaolong Cao; Yan He; Steve Hartson; Haobo Jiang
Journal:  Insect Biochem Mol Biol       Date:  2014-02-22       Impact factor: 4.714

6.  Mass spectral charting of neuropeptidomic expression in the stomatogastric ganglion at multiple developmental stages of the lobster Homarus americanus.

Authors:  Xiaoyue Jiang; Ruibing Chen; Junhua Wang; Anita Metzler; Michael Tlusty; Lingjun Li
Journal:  ACS Chem Neurosci       Date:  2012-03-01       Impact factor: 4.418

7.  Collection of peptides released from single neurons with particle-embedded monolithic capillaries followed by detection with matrix-assisted laser desorption/ionization mass spectrometry.

Authors:  Yi Fan; Stanislav S Rubakhin; Jonathan V Sweedler
Journal:  Anal Chem       Date:  2011-11-22       Impact factor: 6.986

8.  A Caenorhabditis elegans Mass Spectrometric Resource for Neuropeptidomics.

Authors:  Sven Van Bael; Sven Zels; Kurt Boonen; Isabel Beets; Liliane Schoofs; Liesbet Temmerman
Journal:  J Am Soc Mass Spectrom       Date:  2018-01-03       Impact factor: 3.109

9.  A hybrid, de novo based, genome-wide database search approach applied to the sea urchin neuropeptidome.

Authors:  Gerben Menschaert; Tom T M Vandekerckhove; Geert Baggerman; Bart Landuyt; Jonathan V Sweedler; Liliane Schoofs; Walter Luyten; Wim Van Criekinge
Journal:  J Proteome Res       Date:  2010-02-05       Impact factor: 4.466

Review 10.  Application and implementation of selective tissue microdissection and proteomic profiling in neurological disease.

Authors:  Jay Jagannathan; Jie Li; Nicholas Szerlip; Alexander O Vortmeyer; Russell R Lonser; Edward H Oldfield; Zhengping Zhuang
Journal:  Neurosurgery       Date:  2009-01       Impact factor: 4.654

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