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Items: 1 to 20 of 137

1.

Mycobacterium tuberculosis glycoproteomics based on ConA-lectin affinity capture of mannosylated proteins.

González-Zamorano M, Mendoza-Hernández G, Xolalpa W, Parada C, Vallecillo AJ, Bigi F, Espitia C.

J Proteome Res. 2009 Feb;8(2):721-33. doi: 10.1021/pr800756a.

PMID:
19196185
2.

Lectin-based enrichment method for glycoproteomics using hollow fiber flow field-flow fractionation: application to Streptococcus pyogenes.

Kang D, Ji ES, Moon MH, Yoo JS.

J Proteome Res. 2010 Jun 4;9(6):2855-62. doi: 10.1021/pr900937w.

PMID:
20377246
3.

Evidence for glycosylation sites on the 45-kilodalton glycoprotein of Mycobacterium tuberculosis.

Dobos KM, Swiderek K, Khoo KH, Brennan PJ, Belisle JT.

Infect Immun. 1995 Aug;63(8):2846-53.

4.

Comparative glycoproteomics based on lectins affinity capture of N-linked glycoproteins from human Chang liver cells and MHCC97-H cells.

Xu Z, Zhou X, Lu H, Wu N, Zhao H, Zhang L, Zhang W, Liang YL, Wang L, Liu Y, Yang P, Zha X.

Proteomics. 2007 Jul;7(14):2358-70.

PMID:
17623300
5.

Comparative proteome analysis of culture supernatant proteins from virulent Mycobacterium tuberculosis H37Rv and attenuated M. bovis BCG Copenhagen.

Mattow J, Schaible UE, Schmidt F, Hagens K, Siejak F, Brestrich G, Haeselbarth G, Müller EC, Jungblut PR, Kaufmann SH.

Electrophoresis. 2003 Oct;24(19-20):3405-20.

PMID:
14595687
6.
7.

Acute-phase proteins investigation based on lectins affinity capture prior to 2-DE separation: application to serum from multiple sclerosis patients.

Robotti A, Natale M, Albo AG, Lis K, Perga S, Marnetto F, Gilli F, Bertolotto A.

Electrophoresis. 2010 Sep;31(17):2882-93. doi: 10.1002/elps.201000171.

PMID:
20715125
8.
9.

Comprehensive analysis of exported proteins from Mycobacterium tuberculosis H37Rv.

Målen H, Berven FS, Fladmark KE, Wiker HG.

Proteomics. 2007 May;7(10):1702-18.

PMID:
17443846
10.

O-linked glycosylation sites profiling in Mycobacterium tuberculosis culture filtrate proteins.

Smith GT, Sweredoski MJ, Hess S.

J Proteomics. 2014 Jan 31;97:296-306. doi: 10.1016/j.jprot.2013.05.011. Epub 2013 May 20.

11.

Glycoproteomics of Trypanosoma cruzi trypomastigotes using subcellular fractionation, lectin affinity, and stable isotope labeling.

Atwood JA 3rd, Minning T, Ludolf F, Nuccio A, Weatherly DB, Alvarez-Manilla G, Tarleton R, Orlando R.

J Proteome Res. 2006 Dec;5(12):3376-84.

PMID:
17137339
12.

Characterization of the Mycobacterium tuberculosis proteome by liquid chromatography mass spectrometry-based proteomics techniques: a comprehensive resource for tuberculosis research.

Bell C, Smith GT, Sweredoski MJ, Hess S.

J Proteome Res. 2012 Jan 1;11(1):119-30. doi: 10.1021/pr2007939. Epub 2011 Nov 30.

PMID:
22053987
13.

Chemical cross-linking immobilized concanavalin A for use in proteomic analyses.

Miernyk JA, Johnston ML.

Prep Biochem Biotechnol. 2006;36(3):203-14.

PMID:
16707331
14.

Proteins unique to intraphagosomally grown Mycobacterium tuberculosis.

Mattow J, Siejak F, Hagens K, Becher D, Albrecht D, Krah A, Schmidt F, Jungblut PR, Kaufmann SH, Schaible UE.

Proteomics. 2006 Apr;6(8):2485-94.

PMID:
16548060
15.
16.

Glycoproteomics of plasma based on narrow selectivity lectin affinity chromatography.

Jung K, Cho W, Regnier FE.

J Proteome Res. 2009 Feb;8(2):643-50. doi: 10.1021/pr8007495.

PMID:
19099503
17.

Rhodococcus erythropolis as a host for expression, secretion and glycosylation of Mycobacterium tuberculosis proteins.

Vallecillo AJ, Parada C, Morales P, Espitia C.

Microb Cell Fact. 2017 Jan 19;16(1):12. doi: 10.1186/s12934-017-0628-6. Erratum in: Microb Cell Fact. 2017 Apr 19;16(1):65.

19.

Towards the proteome of Mycobacterium tuberculosis.

Rosenkrands I, King A, Weldingh K, Moniatte M, Moertz E, Andersen P.

Electrophoresis. 2000 Nov;21(17):3740-56.

PMID:
11271494
20.

Glycoproteomic analysis of WGA-bound glycoprotein biomarkers in sera from patients with lung adenocarcinoma.

Hongsachart P, Huang-Liu R, Sinchaikul S, Pan FM, Phutrakul S, Chuang YM, Yu CJ, Chen ST.

Electrophoresis. 2009 Apr;30(7):1206-20. doi: 10.1002/elps.200800405.

PMID:
19294700

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