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Computational reverse-engineering of a spider-venom derived peptide active against Plasmodium falciparum SUB1.

PLoS One.. 2011-07;  6(7):e21812
Bastianelli G, Bouillon A, Nguyen C, Crublet E, PÊtres S, Gorgette O, Le-Nguyen D, Barale JC, Nilges M. UnitÉ de Bioinformatique Structurale, DÉpartement de Biologie Structurale et Chimie, Paris, France, CNRS, URA2185, Paris, France
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摘要

BACKGROUND: Psalmopeotoxin I (PcFK1), a protein of 33 aminoacids derived from the venom of the spider Psalmopoeus Cambridgei, is able to inhibit the growth of Plasmodium falciparum malaria parasites with an IC50 in the low micromolar range. PcFK1 was proposed to act as an ion channel inhibitor, although experimental validation of this mechanism is lacking. The surface loops of PcFK1 have some sequence similarity with the parasite protein sequences cleaved by PfSUB1, a subtilisin-like protease essential for egress of Plasmodium falciparum merozoites and invasion into erythrocytes. As PfSUB1 has emerged as an interesting drug target, we explored the hypothesis that PcFK1 targeted PfSUB1 enzymatic activity. FINDIN... More

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