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Proteomic analysis of wild type and arsenite-resistant Leishmania donovani
Authors:Shruti Sharma  Gaganmeet Singh  Hemantkumar D Chavan  Chinmoy S Dey
Institution:a Department of Biotechnology, National Institute of Pharmaceutical Education and Research (NIPER)2, Sector 67, S.A.S. Nagar, Punjab 160 062, India
b Institute de Biochimie, University of Lausanne, Chemin des Boveresses 155, CH-1066 Epalinges, Switzerland
c Wellcome Trust Center for Gene Regulation and Expression, College of Life Sciences, University of Dundee, Dow Street, DD1 5EH, UK
d University of Kansas, School of Medicine, 3901 Rainbow Blvd., Mailstop 3030, Kansas City 66103, USA
Abstract:Leishmania donovani, causative organism for visceral leishmaniasis, is responsible for considerable mortality and morbidity worldwide. Generation of drug-resistant variants continue to challenge the chemotherapy, the mainstay to fight the disease. The aim of current study was proteomic profiling of wild type (Ld-Wt) and arsenite-resistant (Ld-As20) L. donovani. Significant differences in protein profiles were observed between Ld-As20 and its parent Ld-Wt strain. Proteomic analysis of 158 spots from Ld-Wt and 144 spots from, Ld-As20 identified 77 and 74 protein entries, respectively, through MALDI-TOF/TOF based mass spectrometry and database search. A shift in the isoelectric point of few proteins was observed both in Ld-Wt and Ld-As20, which raises the possibility of continuous arsenite stress, resulting in the differences in the protein profiles of drug-resistant strain from its parent wild type strain. The comparative proteomic data holds the key for elucidation of the multifactorial and complex drug resistance mechanism, like arsenite resistance, in the parasite.
Keywords:Arsenite resistance  Leishmania donovani  Mass spectrometry  Post-translational modifications  Proteomics  Two-dimensional gel electrophoresis
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