Identification of a peptide derived from a Bothrops moojeni metalloprotease with in vitro inhibitory action on the Plasmodium falciparum purine nucleoside phosphorylase enzyme (PfPNP)

Biochimie ◽  
2019 ◽  
Vol 162 ◽  
pp. 97-106
Author(s):  
Gracianny Gomes Martins ◽  
Rudson de Jesus Holanda ◽  
Jorge Alfonso ◽  
Ana Fidelina Gómez Garay ◽  
Ana Paula de Azevedo dos Santos ◽  
...  
2010 ◽  
Vol 45 (11) ◽  
pp. 5140-5149 ◽  
Author(s):  
Huaqing Cui ◽  
Gian Filippo Ruda ◽  
Juana Carrero-Lérida ◽  
Luis M. Ruiz-Pérez ◽  
Ian H. Gilbert ◽  
...  

2017 ◽  
Vol 21 (3) ◽  
pp. 677-695 ◽  
Author(s):  
Luciano Porto Kagami ◽  
Gustavo Machado das Neves ◽  
Ricardo Pereira Rodrigues ◽  
Vinicius Barreto da Silva ◽  
Vera Lucia Eifler-Lima ◽  
...  

1991 ◽  
Vol 178 (3) ◽  
pp. 1351-1358 ◽  
Author(s):  
Richard B. Gilbertsen ◽  
Mi K. Dong ◽  
Lynn M. Kossarek ◽  
Jagadish C. Sircar ◽  
Catherine R. Kostian ◽  
...  

Blood ◽  
1972 ◽  
Vol 39 (4) ◽  
pp. 522-524 ◽  
Author(s):  
Frank A. Oski ◽  
Harvey J. Sugerman ◽  
Leonard D. Miller

Abstract The relationship between red cell purine nucleoside phosphorylase activity and the ability of stored erythrocytes to regenerate the organic phosphate 2,3-diphosphoglycerate was evaluated in man, monkey, rabbit, dog, cat, and rat. A linear relationship was observed between the activity of this enzyme and the in vitro regeneration of 2,3-diphosphoglycerate from a solution of inosine, pyruvate, and inorganic phosphate. These studies suggest that rabbit and monkey erythrocytes respond in a manner similar to that of human erythrocytes and, therefore, might be useful experimental models for the evaluation of pharmacologic methods for the in vivo alteration of the oxygen-hemoglobin equilibrium curve.


2005 ◽  
Vol 280 (23) ◽  
pp. 22318-22325 ◽  
Author(s):  
Yang Zang ◽  
Wen-Hu Wang ◽  
Shaw-Wen Wu ◽  
Steven E. Ealick ◽  
Ching C. Wang

Trichomonas vaginalis is an anaerobic protozoan parasite that causes trichomoniasis, a common sexually transmitted disease with worldwide impact. One of the pivotal enzymes in its purine salvage pathway, purine nucleoside phosphorylase (PNP), shows physical properties and substrate specificities similar to those of the high molecular mass bacterial PNPs but differing from those of human PNP. While carrying out studies to identify inhibitors of T. vaginalis PNP (TvPNP), we discovered that the nontoxic nucleoside analogue 2-fluoro-2′-deoxyadenosine (F-dAdo) is a “subversive substrate.” Phosphorolysis by TvPNP of F-dAdo, which is not a substrate for human PNP, releases highly cytotoxic 2-fluoroadenine (F-Ade). In vitro studies showed that both F-dAdo and F-Ade exert strong inhibition of T. vaginalis growth with estimated IC50 values of 106 and 84 nm, respectively, suggesting that F-dAdo might be useful as a potential chemotherapeutic agent against T. vaginalis. To understand the basis of TvPNP specificity, the structures of TvPNP complexed with F-dAdo, 2-fluoroadenosine, formycin A, adenosine, inosine, or 2′-deoxyinosine were determined by x-ray crystallography with resolutions ranging from 2.4 to 2.9 Å. These studies showed that the quaternary structure, monomer fold, and active site are similar to those of Escherichia coli PNP. The principal active site difference is at Thr-156, which is alanine in E. coli PNP. In the complex of TvPNP with F-dAdo, Thr-156 causes the purine base to tilt and shift by 0.5 Å as compared with the binding scheme of F-dAdo in E. coli PNP. The structures of the TvPNP complexes suggest opportunities for further improved subversive substrates beyond F-dAdo.


2018 ◽  
Vol 115 (9) ◽  
pp. 2114-2119 ◽  
Author(s):  
Rodrigo G. Ducati ◽  
Hilda A. Namanja-Magliano ◽  
Rajesh K. Harijan ◽  
J. Eduardo Fajardo ◽  
Andras Fiser ◽  
...  

Plasmodium falciparum causes the most lethal form of human malaria and is a global health concern. The parasite responds to antimalarial therapies by developing drug resistance. The continuous development of new antimalarials with novel mechanisms of action is a priority for drug combination therapies. The use of transition-state analog inhibitors to block essential steps in purine salvage has been proposed as a new antimalarial approach. Mutations that reduce transition-state analog binding are also expected to reduce the essential catalytic function of the target. We have previously reported that inhibition of host and P. falciparum purine nucleoside phosphorylase (PfPNP) by DADMe-Immucillin-G (DADMe-ImmG) causes purine starvation and parasite death in vitro and in primate infection models. P. falciparum cultured under incremental DADMe-ImmG drug pressure initially exhibited increased PfPNP gene copy number and protein expression. At increased drug pressure, additional PfPNP gene copies appeared with point mutations at catalytic site residues involved in drug binding. Mutant PfPNPs from resistant clones demonstrated reduced affinity for DADMe-ImmG, but also reduced catalytic efficiency. The catalytic defects were partially overcome by gene amplification in the region expressing PfPNP. Crystal structures of native and mutated PfPNPs demonstrate altered catalytic site contacts to DADMe-ImmG. Both point mutations and gene amplification are required to overcome purine starvation induced by DADMe-ImmG. Resistance developed slowly, over 136 generations (2136 clonal selection). Transition-state analog inhibitors against PfPNP are slow to induce resistance and may have promise in malaria therapy.


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