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| Journal Articles Details
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| Proteomics Journals |
| J Bacteriol. 187(3):1173-81 |
NopB, a type III secreted protein of Rhizobium sp. strain NGR234, is associated with pilus-like surface appendages. |
Saad MM, Kobayashi H, Marie C, Brown IR, Mansfield JW, Broughton WJ, Deakin WJ.
LBMPS, Département de Biologie Végétale, Université de Genève, Sciences III, Geneva, Switzerland. |
Publication Date: Thursday, January 20, 2005
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Click here to view MEDLINE citation |
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More January, 2005 proteomics journal articles.- A clinical overview of carcinoid tumors: Perspectives for improvement in treatment using peptide analogs (Review).
by Comaru-Schally AM, Schally AV. Journal: Int J Oncol. 26(2):301-9
- Proteomics and physiology of erythritol-producing strains.
by Park YC, Lee DY, Lee DH, Kim HJ, Ryu YW, Seo JH. Journal: J Chromatogr B Analyt Technol Biomed Life Sci. 815(1-2):251-60
- Use of targeted glycoproteomics to identify serum glycoproteins that correlate with liver cancer in woodchucks and humans.
by Block TM, Comunale MA, Lowman M, Steel LF, Romano PR, Fimmel C, Tennant BC, London WT, Evans AA, Blumberg BS, Dwek RA, Mattu TS, Mehta AS. Journal: Proc Natl Acad Sci U S A. :
- Proteomics of bronchoalveolar lavage fluid.
by Wattiez R, Falmagne P. Journal: J Chromatogr B Analyt Technol Biomed Life Sci. 815(1-2):169-78
- Double standards in quantitative proteomics: Direct comparative assessment of difference in Gel electrophoresis (DiGE)and metabolic stable isotope labeling.
by Kolkman A, Dirksen EH, Slijper M, Heck AJ. Journal: Mol Cell Proteomics. :
- Revealing urologic diseases by proteomic techniques.
by Lee SW, Lee KI, Kim JY. Journal: J Chromatogr B Analyt Technol Biomed Life Sci. 815(1-2):203-13
- High-throughput proteome-screening for biomarker detection.
by Pan S, Zhang H, Rush J, Eng J, Zhang N, Patterson D, Comb MJ, Aebersold R. Journal: Mol Cell Proteomics. :
- Targeted comparative proteomics by liquid chromatography-tandem fourier ion cyclotron resonance mass spectrometry.
by Masselon C, Pasa-Tolic L, Tolic N, Anderson GA, Bogdanov B, Vilkov AN, Shen Y, Zhao R, Qian WJ, Lipton MS, Camp DG, Smith RD. Journal: Anal Chem. 77(2):400-6
- Analysis of nucleic acids by FTICR MS.
by Hofstadler SA, Sannes-Lowery KA, Hannis JC. Journal: Mass Spectrom Rev. 2005 Mar-Apr;24(2):265-85
- System, trends and perspectives of proteomics in dicot plants Part II: Proteomes of the complex developmental stages.
by Agrawal GK, Yonekura M, Iwahashi Y, Iwahashi H, Rakwal R. Journal: J Chromatogr B Analyt Technol Biomed Life Sci. 815(1-2):125-36
- A multifaceted analysis of viperid snake venoms by two-dimensional gel electrophoresis: An approach to understanding venom proteomics.
by Serrano SM, Shannon JD, Wang D, Camargo AC, Fox JW. Journal: Proteomics. :
- Multigenic families and proteomics: Extended protein characterization as a tool for paralog gene identification.
by Delalande F, Carapito C, Brizard JP, Brugidou C, Van Dorsselaer A. Journal: Proteomics. :
- Proteomics analysis of prefractionated human lumbar cerebrospinal fluid.
by Yuan X, Desiderio DM. Journal: Proteomics. :
- Effectiveness and limitation of two-dimensional gel electrophoresis in bacterial membrane protein proteomics and perspectives.
by Bunai K, Yamane K. Journal: J Chromatogr B Analyt Technol Biomed Life Sci. 815(1-2):227-36
- Strategies for revealing lower abundance proteins in two-dimensional protein maps.
by Ahmed N, Rice GE. Journal: J Chromatogr B Analyt Technol Biomed Life Sci. 815(1-2):39-50
- Breast Cancer Cell Lines Grown in Vivo: What Goes in Isn't Always the Same as What Comes Out.
by Jessani N, Niessen S, Mueller BM, Cravatt BF. Journal: Cell Cycle. 4(2):
- Role of proteomics in taxonomy: the Mytilus complex as a model of study.
by López JL. Journal: J Chromatogr B Analyt Technol Biomed Life Sci. 815(1-2):261-74
- Detecting protein-protein interactions with a green fluorescent protein fragment reassembly trap: scope and mechanism.
by Magliery TJ, Wilson CG, Pan W, Mishler D, Ghosh I, Hamilton AD, Regan L. Journal: J Am Chem Soc. 127(1):146-57
- Integration with the human genome of peptide sequences obtained by high-throughput mass spectrometry.
by Desiere F, Deutsch EW, Nesvizhskii AI, Mallick P, King NL, Eng JK, Aderem A, Boyle R, Brunner E, Donohoe S, Fausto N, Hafen E, Hood L, Katze MG, Kennedy KA, Kregenow F, Lee H, Lin B, Martin D, Ranish JA, Rawlings DJ, Samelson LE, Shiio Y, Watts JD, Wollscheid B, Wright ME, Yan W, Yang L, Yi EC, Zhang H, Aebersold R. Journal: Genome Biol. 6(1):R9
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