Genomic organization and gene function in Leishmania

Author:

Myler P. J.1,Sisk E.1,McDonagh P. D.1,Martinez-Calvillo S.1,Schnaufer A.1,Sunkin S. M.1,Yan S.1,Madhubala R.2,Ivens A.3,Stuart K.1

Affiliation:

1. Seattle Biomedical Research Institute, 4 Nickerson Street, Seattle, WA 98109–1651, USA

2. School of Life Sciences, Jawaharla Nehru University, New Delhi, I 10067, India

3. Sanger Centre, Wellcome Trust Genome Campus, Hinxton, Cambridge CB10 1SA, U.K.

Abstract

Sequencing of the Leishmania major Friedlin genome is well underway with chromosome 1 (Chr1) and Chr3 having been completely sequenced, and Chr4 virtually complete. Sequencing of several other chromosomes is in progress and the complete genome sequence may be available as soon as 2003. A large proportion (≈ 70%) of the newly identified genes remains unclassified, with many of these being potentially Leishmania (or kinetoplastid-) specific. Most interestingly, the genes are organized into large (> 100–300 kb) polycistronic clusters of adjacent genes on the same DNA strand. Chrl contains two such clusters organized in a ‘divergent’ manner, i.e. the mRNAs for the two sets of genes are both transcribed towards the telomeres. Chr3 contains two ‘convergent’ clusters, with a single ‘divergent’ gene at one telomere, with the two large clusters separated by a tRNA gene. We have characterized several genes from the LD1 (Leishmania DNA 1) region of Chr35. BT1 (formerly ORFG) encodes a biopterin transporter and ORFF encodes a nuclear protein of unknown function. Immunization of mice with recombinant antigens from these genes results in significant reduction in parasite burden following Leishmania challenge. Recombinant ORFF antigen shows promise as a serodiagnostic. We have also developed a tetracycline-regulated promoter system, which allows us to modulate gene expression in Leishmania.

Publisher

Portland Press Ltd.

Subject

Biochemistry

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