Study of the binding of nuclear proteins from plasmodium berghei strains with different chloroquine sensitivity to oligonucleotides corresponding to regulatory elements of multidrug resistance (mdr1) gene

   
Pankova T.G.1 , Igonina T.M.1, Kobzev V.F.1, Merkulova T.I.1

1. Institute of Cytology and Genetics, Siberian Branch of the Russian Academy of Sciences
Section: Experimental/Clinical Study
PubMed Id: 18078069
Year: 2007  Volume: 53  Issue: 5  Pages: 547-556
Using electrophoretic mobility shift assay we first revealed in the nuclear extracts of the rodent malaria parasite Plasmodium berghei (P. berghei) proteins, which bind specifically to the double-stranded oligonucleotides reproducing the binding sites of the transcription factors of AP1 family, NF-IL6 and SP1 involved in the up-regulation of human multidrug resistance (mdr1) gene and to the oligonucleotide corresponding to the element responsive for the stimulation by serum (SRE). The nuclear proteins isolated from the P. berghei strains with various chloroquine sensitivity bound differently to the most of the oligonucleotide probes used. Mutations in the consensus sequences of AP1, NF-IL6 and SRE led to the loss of some DNA-protein complexes, suggesting the existence of malaria parasite nuclear proteins, whose DNA-binding domains are similar to DNA-binding domains of NF-IL6, SRF1, and AP1 family members. These proteins exhibit greater activities in chloroquine resistant strains. The results obtained denote profound alterations in the plasmodium regulatory apparatus occurred as the result of selection on chloroquine resistance.
Download PDF:  
Keywords: P. berghei, chloroquine resistance, transcription factors, oligodesoxyribonucleotides, electrophoretic mobility shift assay
Citation:

Pankova, T. G., Igonina, T. M., Kobzev, V. F., Merkulova, T. I. (2007). Study of the binding of nuclear proteins from plasmodium berghei strains with different chloroquine sensitivity to oligonucleotides corresponding to regulatory elements of multidrug resistance (mdr1) gene. Biomeditsinskaya Khimiya, 53(5), 547-556.
This paper is also available as the English translation: 10.1007/s11828-008-1011-2
References  
 2024 (vol 70)
 2023 (vol 69)
 2022 (vol 68)
 2021 (vol 67)
 2020 (vol 66)
 2019 (vol 65)
 2018 (vol 64)
 2017 (vol 63)
 2016 (vol 62)
 2015 (vol 61)
 2014 (vol 60)
 2013 (vol 59)
 2012 (vol 58)
 2011 (vol 57)
 2010 (vol 56)
 2009 (vol 55)
 2008 (vol 54)
 2007 (vol 53)
 2006 (vol 52)
 2005 (vol 51)
 2004 (vol 50)
 2003 (vol 49)