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Items: 10

1.

Linking post-translational modifications and variation of phenotypic traits.

Albertin W, Marullo P, Bely M, Aigle M, Bourgais A, Langella O, Balliau T, Chevret D, Valot B, da Silva T, Dillmann C, de Vienne D, Sicard D.

Mol Cell Proteomics. 2013 Mar;12(3):720-35. doi: 10.1074/mcp.M112.024349. Epub 2012 Dec 27.

2.

2D electrophoresis-based expression proteomics: a microbiologist's perspective.

Sá-Correia I, Teixeira MC.

Expert Rev Proteomics. 2010 Dec;7(6):943-53. doi: 10.1586/epr.10.76. Review.

PMID:
21142894
3.

Proteomics of the human pituitary tissue: bioanalytical methods and applications.

Giorgianni F, Koirala D, Beranova-Giorgianni S.

Bioanalysis. 2014;6(14):1989-2003. doi: 10.4155/bio.14.132. Review.

PMID:
25158968
4.

Proteomics beyond trypsin.

Tsiatsiani L, Heck AJ.

FEBS J. 2015 Jul;282(14):2612-26. doi: 10.1111/febs.13287. Epub 2015 Apr 14. Review.

5.

How did Saccharomyces evolve to become a good brewer?

Piskur J, Rozpedowska E, Polakova S, Merico A, Compagno C.

Trends Genet. 2006 Apr;22(4):183-6. Epub 2006 Feb 24. Review.

PMID:
16499989
6.

The importance of post-translational modifications in regulating Saccharomyces cerevisiae metabolism.

Oliveira AP, Sauer U.

FEMS Yeast Res. 2012 Mar;12(2):104-17. doi: 10.1111/j.1567-1364.2011.00765.x. Epub 2011 Dec 22. Review.

7.
8.

Recent advances in proteomics: towards the human proteome.

Wang K, Huang C, Nice E.

Biomed Chromatogr. 2014 Jun;28(6):848-57. doi: 10.1002/bmc.3157. Review.

PMID:
24861753
9.

Protein amino-terminal modifications and proteomic approaches for N-terminal profiling.

Lai ZW, Petrera A, Schilling O.

Curr Opin Chem Biol. 2015 Feb;24:71-9. doi: 10.1016/j.cbpa.2014.10.026. Epub 2014 Nov 15. Review.

PMID:
25461725
10.

[Analysis of co- and post-translational modifications of proteins by in vitro and in vivo metabolic labeling].

Utsumi T.

Seikagaku. 2003 May;75(5):373-8. Review. Japanese. No abstract available.

PMID:
12822434

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