Structural modeling and docking studies of ribose 5-phosphate isomerase from Leishmania major and Homo sapiens: a comparative analysis for Leishmaniasis treatment

التفاصيل البيبلوغرافية
العنوان: Structural modeling and docking studies of ribose 5-phosphate isomerase from Leishmania major and Homo sapiens: a comparative analysis for Leishmaniasis treatment
المؤلفون: Priscila V. S. Z. Capriles, Ana Carolina Ramos Guimarães, Isabella A. Guedes, Luiz Phillippe R. Baptista, Fabio L. Custodio, Marcelo Alves-Ferreira, Laurent E. Dardenne
المصدر: Journal of molecular graphicsmodelling. 55
سنة النشر: 2014
مصطلحات موضوعية: In silico, Molecular Sequence Data, Static Electricity, Antiprotozoal Agents, Leishmaniasis, Cutaneous, Isomerase, Biology, Ligands, Substrate Specificity, chemistry.chemical_compound, Ribulosephosphates, Isomerism, Catalytic Domain, Ribose, Materials Chemistry, Humans, Amino Acid Sequence, Physical and Theoretical Chemistry, Spectroscopy, Aldose-Ketose Isomerases, Leishmania major, Active site, Computer Graphics and Computer-Aided Design, Molecular Docking Simulation, Ribose-5-phosphate isomerase, Biochemistry, chemistry, Protein–ligand docking, Docking (molecular), Homo sapiens, Structural Homology, Protein, biology.protein, Ribosemonophosphates
الوصف: Leishmaniases are caused by protozoa of the genus Leishmania and are considered the second-highest cause of death worldwide by parasitic infection. The drugs available for treatment in humans are becoming ineffective mainly due to parasite resistance; therefore, it is extremely important to develop a new chemotherapy against these parasites. A crucial aspect of drug design development is the identification and characterization of novel molecular targets. In this work, through an in silico comparative analysis between the genomes of Leishmania major and Homo sapiens, the enzyme ribose 5-phosphate isomerase (R5PI) was indicated as a promising molecular target. R5PI is an important enzyme that acts in the pentose phosphate pathway and catalyzes the interconversion of d-ribose-5-phosphate (R5P) and d-ribulose-5-phosphate (5RP). R5PI activity is found in two analogous groups of enzymes called RpiA (found in H. sapiens) and RpiB (found in L. major). Here, we present the first report of the three-dimensional (3D) structures and active sites of RpiB from L. major (LmRpiB) and RpiA from H. sapiens (HsRpiA). Three-dimensional models were constructed by applying a hybrid methodology that combines comparative and ab initio modeling techniques, and the active site was characterized based on docking studies of the substrates R5P (furanose and ring-opened forms) and 5RP. Our comparative analyses show that these proteins are structural analogs and that distinct residues participate in the interconversion of R5P and 5RP. We propose two distinct reaction mechanisms for the reversible isomerization of R5P to 5RP, which is catalyzed by LmRpiB and HsRpiA. We expect that the present results will be important in guiding future molecular modeling studies to develop new drugs that are specially designed to inhibit the parasitic form of the enzyme without significant effects on the human analog.
تدمد: 1873-4243
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::f9643e51d34af6501b70ae9abf6db0f0Test
https://pubmed.ncbi.nlm.nih.gov/25528729Test
حقوق: CLOSED
رقم الانضمام: edsair.doi.dedup.....f9643e51d34af6501b70ae9abf6db0f0
قاعدة البيانات: OpenAIRE