Melo Pollyana M S, El Chamy Maluf Sarah, Azevedo Mauro F, Paschoalin Thaysa, Budu Alexandre, Bagnaresi Piero, Henrique-Silva Flávio, Soares-Costa Andrea, Gazarini Marcos L, Carmona Adriana K
Departamento de Biofísica, Universidade Federal de São Paulo, São Paulo, Brazil.
Departamento de Biociências, Universidade Federal de São Paulo, Santos, Brazil.
Parasitol Int. 2018 Apr;67(2):233-236. doi: 10.1016/j.parint.2017.12.005. Epub 2017 Dec 27.
Malaria is a disease caused by Plasmodium parasites that affects hundreds of millions of people. Plasmodium proteases are involved in invasion, erythrocyte egress and degradation of host proteins. Falcipains are well-studied cysteine peptidases located in P. falciparum food vacuoles that participate in hemoglobin degradation. Cystatins are natural cysteine protease inhibitors that are implicated in a wide range of regulatory processes. Here, we report that a cystatin from sugarcane, CaneCPI-4, is selectively internalized into P. falciparum infected erythrocytes and is not processed by the parasite proteolytic machinery. Furthermore, we demonstrated the inhibition of P. falciparum cysteine proteases by CaneCPI-4, suggesting that it can exert inhibitory functions inside the parasites. The inhibition of the proteolytic activity of parasite cells is specific to this cystatin, as the addition of an anti-CaneCPI-4 antibody completely abolished the inhibition. We extended the studies to recombinant falcipain-2 and falcipain-3 and demonstrated that CaneCPI-4 strongly inhibits these enzymes, with IC values of 12nM and 42nM, respectively. We also demonstrated that CaneCPI-4 decreased the hemozoin formation in the parasites, affecting the parasitemia. Taken together, this study identified a natural molecule as a potential antimalarial that specifically targets falcipains and also contributes to a better understanding of macromolecule acquisition by Plasmodium falciparum infected RBCs.
疟疾是一种由疟原虫寄生虫引起的疾病,影响着数亿人。疟原虫蛋白酶参与入侵、红细胞逸出以及宿主蛋白的降解。恶性疟原虫半胱氨酸蛋白酶是位于恶性疟原虫食物泡中参与血红蛋白降解的经过充分研究的半胱氨酸肽酶。胱抑素是天然的半胱氨酸蛋白酶抑制剂,参与广泛的调节过程。在此,我们报告一种来自甘蔗的胱抑素CaneCPI - 4可选择性地内化到恶性疟原虫感染的红细胞中,且不会被寄生虫的蛋白水解机制加工处理。此外,我们证明了CaneCPI - 4对恶性疟原虫半胱氨酸蛋白酶具有抑制作用,表明它可以在寄生虫内部发挥抑制功能。寄生虫细胞蛋白水解活性的抑制作用对这种胱抑素具有特异性,因为添加抗CaneCPI - 4抗体完全消除了抑制作用。我们将研究扩展到重组恶性疟原虫半胱氨酸蛋白酶 - 2和恶性疟原虫半胱氨酸蛋白酶 - 3,并证明CaneCPI - 4强烈抑制这些酶,其IC值分别为12nM和42nM。我们还证明CaneCPI - 4减少了寄生虫中疟色素的形成,影响了疟原虫血症。综上所述,本研究鉴定出一种天然分子作为潜在的抗疟药物,它特异性靶向恶性疟原虫半胱氨酸蛋白酶,也有助于更好地理解恶性疟原虫感染的红细胞获取大分子的过程。