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Items: 1 to 20 of 74

1.

Phosphoproteome dynamics reveal heat-shock protein complexes specific to the Leishmania donovani infectious stage.

Morales MA, Watanabe R, Dacher M, Chafey P, Osorio y Fortéa J, Scott DA, Beverley SM, Ommen G, Clos J, Hem S, Lenormand P, Rousselle JC, Namane A, Späth GF.

Proc Natl Acad Sci U S A. 2010 May 4;107(18):8381-6. doi: 10.1073/pnas.0914768107. Epub 2010 Apr 19.

2.

Structure of cyclophilin from Leishmania donovani bound to cyclosporin at 2.6 A resolution: correlation between structure and thermodynamic data.

Venugopal V, Datta AK, Bhattacharyya D, Dasgupta D, Banerjee R.

Acta Crystallogr D Biol Crystallogr. 2009 Nov;65(Pt 11):1187-95. doi: 10.1107/S0907444909034234. Epub 2009 Oct 22.

PMID:
19923714
3.

A library of fluorescent peptides for exploring the substrate specificities of prolyl isomerases.

Zoldák G, Aumüller T, Lücke C, Hritz J, Oostenbrink C, Fischer G, Schmid FX.

Biochemistry. 2009 Nov 3;48(43):10423-36. doi: 10.1021/bi9014242.

PMID:
19785464
4.

Protein structure homology modeling using SWISS-MODEL workspace.

Bordoli L, Kiefer F, Arnold K, Benkert P, Battey J, Schwede T.

Nat Protoc. 2009;4(1):1-13. doi: 10.1038/nprot.2008.197.

PMID:
19131951
5.

Phosphoproteomic analysis of Leishmania donovani pro- and amastigote stages.

Morales MA, Watanabe R, Laurent C, Lenormand P, Rousselle JC, Namane A, Späth GF.

Proteomics. 2008 Jan;8(2):350-63. doi: 10.1002/pmic.200700697.

PMID:
18203260
6.

Cutaneous leishmaniasis.

Reithinger R, Dujardin JC, Louzir H, Pirmez C, Alexander B, Brooker S.

Lancet Infect Dis. 2007 Sep;7(9):581-96. Review.

PMID:
17714672
7.

Basal body positioning is controlled by flagellum formation in Trypanosoma brucei.

Absalon S, Kohl L, Branche C, Blisnick T, Toutirais G, Rusconi F, Cosson J, Bonhivers M, Robinson D, Bastin P.

PLoS One. 2007 May 9;2(5):e437.

8.
9.

Synthesis, characterization, and utility of thermoresponsive natural/unnatural product macroligands for affinity chromatography.

Zhou M, Sivaramakrishnan A, Ponnamperuma K, Low WK, Li C, Liu JO, Bergbreiter DE, Romo D.

Org Lett. 2006 Nov 9;8(23):5247-50.

10.

Immunophilins: for the love of proteins.

Barik S.

Cell Mol Life Sci. 2006 Dec;63(24):2889-900. Review.

PMID:
17075696
11.
12.

Reversal of ADP-mediated aggregation of adenosine kinase by cyclophilin leads to its reactivation.

Sen B, Chakraborty A, Datta R, Bhattacharyya D, Datta AK.

Biochemistry. 2006 Jan 10;45(1):263-71.

PMID:
16388602
13.

Peptidyl prolyl cis/trans-isomerases: comparative reactivities of cyclophilins, FK506-binding proteins, and parvulins with fluorinated oligopeptide and protein substrates.

Golbik R, Yu C, Weyher-Stingl E, Huber R, Moroder L, Budisa N, Schiene-Fischer C.

Biochemistry. 2005 Dec 13;44(49):16026-34.

PMID:
16331962
14.

The genome of the kinetoplastid parasite, Leishmania major.

Ivens AC, Peacock CS, Worthey EA, Murphy L, Aggarwal G, Berriman M, Sisk E, Rajandream MA, Adlem E, Aert R, Anupama A, Apostolou Z, Attipoe P, Bason N, Bauser C, Beck A, Beverley SM, Bianchettin G, Borzym K, Bothe G, Bruschi CV, Collins M, Cadag E, Ciarloni L, Clayton C, Coulson RM, Cronin A, Cruz AK, Davies RM, De Gaudenzi J, Dobson DE, Duesterhoeft A, Fazelina G, Fosker N, Frasch AC, Fraser A, Fuchs M, Gabel C, Goble A, Goffeau A, Harris D, Hertz-Fowler C, Hilbert H, Horn D, Huang Y, Klages S, Knights A, Kube M, Larke N, Litvin L, Lord A, Louie T, Marra M, Masuy D, Matthews K, Michaeli S, Mottram JC, Müller-Auer S, Munden H, Nelson S, Norbertczak H, Oliver K, O'neil S, Pentony M, Pohl TM, Price C, Purnelle B, Quail MA, Rabbinowitsch E, Reinhardt R, Rieger M, Rinta J, Robben J, Robertson L, Ruiz JC, Rutter S, Saunders D, Schäfer M, Schein J, Schwartz DC, Seeger K, Seyler A, Sharp S, Shin H, Sivam D, Squares R, Squares S, Tosato V, Vogt C, Volckaert G, Wambutt R, Warren T, Wedler H, Woodward J, Zhou S, Zimmermann W, Smith DF, Blackwell JM, Stuart KD, Barrell B, Myler PJ.

Science. 2005 Jul 15;309(5733):436-42.

15.

The genome of the African trypanosome Trypanosoma brucei.

Berriman M, Ghedin E, Hertz-Fowler C, Blandin G, Renauld H, Bartholomeu DC, Lennard NJ, Caler E, Hamlin NE, Haas B, Böhme U, Hannick L, Aslett MA, Shallom J, Marcello L, Hou L, Wickstead B, Alsmark UC, Arrowsmith C, Atkin RJ, Barron AJ, Bringaud F, Brooks K, Carrington M, Cherevach I, Chillingworth TJ, Churcher C, Clark LN, Corton CH, Cronin A, Davies RM, Doggett J, Djikeng A, Feldblyum T, Field MC, Fraser A, Goodhead I, Hance Z, Harper D, Harris BR, Hauser H, Hostetler J, Ivens A, Jagels K, Johnson D, Johnson J, Jones K, Kerhornou AX, Koo H, Larke N, Landfear S, Larkin C, Leech V, Line A, Lord A, Macleod A, Mooney PJ, Moule S, Martin DM, Morgan GW, Mungall K, Norbertczak H, Ormond D, Pai G, Peacock CS, Peterson J, Quail MA, Rabbinowitsch E, Rajandream MA, Reitter C, Salzberg SL, Sanders M, Schobel S, Sharp S, Simmonds M, Simpson AJ, Tallon L, Turner CM, Tait A, Tivey AR, Van Aken S, Walker D, Wanless D, Wang S, White B, White O, Whitehead S, Woodward J, Wortman J, Adams MD, Embley TM, Gull K, Ullu E, Barry JD, Fairlamb AH, Opperdoes F, Barrell BG, Donelson JE, Hall N, Fraser CM, Melville SE, El-Sayed NM.

Science. 2005 Jul 15;309(5733):416-22.

16.

The genome sequence of Trypanosoma cruzi, etiologic agent of Chagas disease.

El-Sayed NM, Myler PJ, Bartholomeu DC, Nilsson D, Aggarwal G, Tran AN, Ghedin E, Worthey EA, Delcher AL, Blandin G, Westenberger SJ, Caler E, Cerqueira GC, Branche C, Haas B, Anupama A, Arner E, Aslund L, Attipoe P, Bontempi E, Bringaud F, Burton P, Cadag E, Campbell DA, Carrington M, Crabtree J, Darban H, da Silveira JF, de Jong P, Edwards K, Englund PT, Fazelina G, Feldblyum T, Ferella M, Frasch AC, Gull K, Horn D, Hou L, Huang Y, Kindlund E, Klingbeil M, Kluge S, Koo H, Lacerda D, Levin MJ, Lorenzi H, Louie T, Machado CR, McCulloch R, McKenna A, Mizuno Y, Mottram JC, Nelson S, Ochaya S, Osoegawa K, Pai G, Parsons M, Pentony M, Pettersson U, Pop M, Ramirez JL, Rinta J, Robertson L, Salzberg SL, Sanchez DO, Seyler A, Sharma R, Shetty J, Simpson AJ, Sisk E, Tammi MT, Tarleton R, Teixeira S, Van Aken S, Vogt C, Ward PN, Wickstead B, Wortman J, White O, Fraser CM, Stuart KD, Andersson B.

Science. 2005 Jul 15;309(5733):409-15.

17.

Crystal engineering yields crystals of cyclophilin D diffracting to 1.7 A resolution.

Schlatter D, Thoma R, Küng E, Stihle M, Müller F, Borroni E, Cesura A, Hennig M.

Acta Crystallogr D Biol Crystallogr. 2005 May;61(Pt 5):513-9. Epub 2005 Apr 20.

PMID:
15858260
18.

Differentiation of Leishmania donovani in host-free system: analysis of signal perception and response.

Barak E, Amin-Spector S, Gerliak E, Goyard S, Holland N, Zilberstein D.

Mol Biochem Parasitol. 2005 May;141(1):99-108.

PMID:
15811531
19.

Interaction of the Hsp90 cochaperone cyclophilin 40 with Hsc70.

Carrello A, Allan RK, Morgan SL, Owen BA, Mok D, Ward BK, Minchin RF, Toft DO, Ratajczak T.

Cell Stress Chaperones. 2004 Summer;9(2):167-81.

20.

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