z-logo
Premium
Structure and reactivity of Trypanosoma brucei pteridine reductase: inhibition by the archetypal antifolate methotrexate
Author(s) -
Dawson Alice,
Gibellini Federica,
Sienkiewicz Natasha,
Tulloch Lindsay B.,
Fyfe Paul K.,
McLuskey Karen,
Fairlamb Alan H.,
Hunter William N.
Publication year - 2006
Publication title -
molecular microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.857
H-Index - 247
eISSN - 1365-2958
pISSN - 0950-382X
DOI - 10.1111/j.1365-2958.2006.05332.x
Subject(s) - pteridine , biology , biochemistry , trypanosoma brucei , dihydrofolate reductase , antifolate , trypanosoma , active site , catalytic triad , cofactor , enzyme , methotrexate , antimetabolite , genetics , immunology , gene
Summary The protozoan Trypanosoma brucei has a functional pteridine reductase ( Tb PTR1), an NADPH‐dependent short‐chain reductase that participates in the salvage of pterins, which are essential for parasite growth. PTR1 displays broad‐spectrum activity with pterins and folates, provides a metabolic bypass for inhibition of the trypanosomatid dihydrofolate reductase and therefore compromises the use of antifolates for treatment of trypanosomiasis. Catalytic properties of recombinant Tb PTR1 and inhibition by the archetypal antifolate methotrexate have been characterized and the crystal structure of the ternary complex with cofactor NADP + and the inhibitor determined at 2.2 Å resolution. This enzyme shares 50% amino acid sequence identity with Leishmania major PTR1 ( Lm PTR1) and comparisons show that the architecture of the cofactor binding site, and the catalytic centre are highly conserved, as are most interactions with the inhibitor. However, specific amino acid differences, in particular the placement of Trp221 at the side of the active site, and adjustment of the β6‐α6 loop and α6 helix at one side of the substrate‐binding cleft significantly reduce the size of the substrate binding site of Tb PTR1 and alter the chemical properties compared with Lm PTR1. A reactive Cys168, within the active site cleft, in conjunction with the C‐terminus carboxyl group and His267 of a partner subunit forms a triad similar to the catalytic component of cysteine proteases. Tb PTR1 therefore offers novel structural features to exploit in the search for inhibitors of therapeutic value against African trypanosomiasis.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here