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Andrej Shevchenko

Researcher at Max Planck Society

Publications -  287
Citations -  57487

Andrej Shevchenko is an academic researcher from Max Planck Society. The author has contributed to research in topics: Proteome & Lipidome. The author has an hindex of 99, co-authored 276 publications receiving 53479 citations. Previous affiliations of Andrej Shevchenko include European Bioinformatics Institute & ISREC.

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Mass Spectrometric Sequencing of Proteins from Silver-Stained Polyacrylamide Gels

TL;DR: Silver staining allows a substantial shortening of sample preparation time and may, therefore, be preferable over Coomassie staining, and this work removes a major obstacle to the low-level sequence analysis of proteins separated on polyacrylamide gels.
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In-gel digestion for mass spectrometric characterization of proteins and proteomes

TL;DR: This protocol is for the in-gel digestion of both silver and Coomassie-stained protein spots or bands and can be followed by MALDI-MS or LC-MS/MS analysis to identify proteins at sensitivities better than a few femtomoles of protein starting material.
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FLICE, a novel FADD-homologous ICE/CED-3-like protease, is recruited to the CD95 (Fas/APO-1) death--inducing signaling complex.

TL;DR: This work utilized nano-electrospray tandem mass spectrometry to identify CAP3 and CAP4, components of the CD95 (Fas/APO-1) death-inducing signaling complex, and found a novel 55 kDa protein, designated FLICE, which has homology to both FADD and the ICE/CED-3 family of cysteine proteases.
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IKK-1 and IKK-2: Cytokine-Activated IκB Kinases Essential for NF-κB Activation

TL;DR: In this article, a large multiprotein complex, the IkappaB kinase (IKK) signalsome, was purified from HeLa cells and found to contain a cytokine-inducible IKK kinase activity that phosphorylates IappaB-alpha and IKK-beta.
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Femtomole sequencing of proteins from polyacrylamide gels by nano-electrospray mass spectrometry

TL;DR: A simple and robust technique for the sequencing of proteins isolated by polyacrylamide gel electro-phoresis, using nano-electrospray3,4 tandem mass spectrometry5,6 and multiple-sequence stretches of up to 16 amino acids are obtained.