Literature DB >> 10949135

Improved sensitivity proteomics by postharvest alkylation and radioactive labelling of proteins.

G L Vuong1, S M Weiss, W Kammer, M Priemer, M Vingron, A Nordheim, M A Cahill.   

Abstract

We describe approaches to improve the detection of proteins by postharvest alkylation and subsequent radioactive labeling with either [3H]iodoacetamide or 125I. Database protein sequence analysis suggested that cysteine is not suitable for detection of the entire proteome, but that cysteine alkylating reagents can increase the number of proteins able to be detected by iodination chemistry. Proteins were alkylated with beta-(4-hydroxyphenyl)ethyl iodoacetamide, or with 1,5-l-AEDANS (the Hudson Weber reagent). Subsequent iodination using the Iodo-Gen system was found to be most efficient. The enhanced sensitivity obtainable by using these approaches is expected to be sufficient for visualization of the lowest copy number proteins from human cells, such as from clinical samples. However, we argue that significantly improved methods of protein separation will be necessary to resolve the large number of proteins expected to be detectable with this sensitivity.

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Year:  2000        PMID: 10949135     DOI: 10.1002/1522-2683(20000701)21:13<2594::AID-ELPS2594>3.0.CO;2-K

Source DB:  PubMed          Journal:  Electrophoresis        ISSN: 0173-0835            Impact factor:   3.535


  7 in total

1.  Quantitative proteome analysis using D-labeled N-ethylmaleimide and 13C-labeled iodoacetanilide by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry.

Authors:  Sadamu Kurono; Tamie Kurono; Naoka Komori; Satomi Niwayama; Hiroyuki Matsumoto
Journal:  Bioorg Med Chem       Date:  2006-10-16       Impact factor: 3.641

2.  Alkylation of human hair keratin for tunable hydrogel erosion and drug delivery in tissue engineering applications.

Authors:  Sangheon Han; Trevor R Ham; Salma Haque; Jessica L Sparks; Justin M Saul
Journal:  Acta Biomater       Date:  2015-05-18       Impact factor: 8.947

3.  Solid-phase extraction and purification of membrane proteins using a UV-modified PMMA microfluidic bioaffinity μSPE device.

Authors:  Katrina N Battle; Joshua M Jackson; Małgorzata A Witek; Mateusz L Hupert; Sally A Hunsucker; Paul M Armistead; Steven A Soper
Journal:  Analyst       Date:  2014-03-21       Impact factor: 4.616

Review 4.  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

Review 5.  Microproteomics: analysis of protein diversity in small samples.

Authors:  Howard B Gutstein; Jeffrey S Morris; Suresh P Annangudi; Jonathan V Sweedler
Journal:  Mass Spectrom Rev       Date:  2008 Jul-Aug       Impact factor: 10.946

6.  Enhanced detergent extraction for analysis of membrane proteomes by two-dimensional gel electrophoresis.

Authors:  Matthew A Churchward; R Hussain Butt; John C Lang; Kimberly K Hsu; Jens R Coorssen
Journal:  Proteome Sci       Date:  2005-06-07       Impact factor: 2.480

7.  A morphologic and semi-quantitative technique to analyze synthesis and release of specific proteins in cells.

Authors:  Guowei Huang; Yun Wang; Juping Wang; Chunzhang Yang; Tao Huang; Zhengping Zhuang; Jiang Gu
Journal:  BMC Cell Biol       Date:  2014-12-05       Impact factor: 4.241

  7 in total

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