Título : Modeling, Mutagenesis, and Structural Studies on the Fully Conserved Phosphate-Binding Loop (Loop 8) of Triosephosphate Isomerase: Toward a NewSubstrate Specificity |
Autor : Norledge, Brian V. Lambeir, Anne M. Abagyan, Ruben A. Rottmann, Antje Fernández-Escamilla, Ana Mª Filimonov, Vladimir V. Peter, Martin G. Wierenga, Rik K. |
Editor : Wiley |
Departamento: Departamentos de la UMH::Bioquímica y Biología Molecular |
Fecha de publicación: 2000 |
URI : https://hdl.handle.net/11000/39263 |
Resumen :
Loop8 (residues 232–242) intriosephosphate
isomerase (TIM) is a highly conserved
loop that forms a tight binding pocket for the phosphate
moiety of the substrate. Its sequence includes
the fully conserved, solvent-exposed Leu238. The
tight phosphate-binding pocket explains the high
substrate specificity of TIM being limited to the in
vivo substrates dihydroxyacetone-phosphate and
D-glyceraldehyde-3-phosphate. Here we use the monomeric
variant of trypanosomal TIMfor exploring
the structural consequences of shortening this loop.
The mutagenesis, guided by extensive modeling
calculations and followed up by crystallographic
characterization, is aimed at widening the phosphate-
binding pocket and, consequently, changing
the substrate specificity. Two new variants were
characterized. The crystal structures of these variants
indicate that in monomeric forms of TIM, the
Leu238 side-chain is nicely buried in a hydrophobic
cluster. Monomeric forms of wild-type dimeric TIM
are known to exist transiently as folding intermediates;
our structural analysis suggests that in this
monomeric form, Leu238 of loop 8 also adopts this
completely buried conformation, which explains its
full conservation across the evolution. The much
wider phosphate-binding pocket of the newvariant
allows for the development of a new TIM variant
with a different substrate specificity
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Palabras clave/Materias: triosephosphate isomerase (TIM) loop modeling protein design folding pathway folding intermediate |
Área de conocimiento : CDU: Ciencias puras y naturales: Biología: Bioquímica. Biología molecular. Biofísica |
Tipo de documento : info:eu-repo/semantics/article |
Derechos de acceso: info:eu-repo/semantics/closedAccess Attribution-NonCommercial-NoDerivatives 4.0 Internacional |
DOI : https://doi.org/10.1002/1097-0134(20010215)42:3%3C383::AID-PROT80%3E3.0.CO;2-G |
Publicado en: PROTEINS: Structure, Function and Bioinformatics, Vol. 42 (2001) pp. 383-389 |
Aparece en las colecciones: Artículos - Bioquímica y Biología Molecular
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