Prodrug Activation by Cryptosporidium Thymidine Kinase

抗寄生虫的 微小隐孢子虫 生物 胸苷激酶 前药 胸苷 胸苷酸合酶 微生物学 隐孢子虫 体外 病毒学 生物化学 医学 化疗 病毒 单纯疱疹病毒 粪便 遗传学 病理 氟尿嘧啶
作者
Xin Sun,Lisa Sharling,Mani Muthalagi,Devaraja G. Mudeppa,Krzysztof W. Pankiewicz,Krzysztof Felczak,Pradipsinh K. Rathod,Jan R. Mead,Boris Striepen,Lizbeth Hedstrom
出处
期刊:Journal of Biological Chemistry [Elsevier BV]
卷期号:285 (21): 15916-15922 被引量:20
标识
DOI:10.1074/jbc.m110.101543
摘要

Cryptosporidium spp. cause acute gastrointestinal disease that can be fatal for immunocompromised individuals. These protozoan parasites are resistant to conventional antiparasitic chemotherapies and the currently available drugs to treat these infections are largely ineffective. Genomic studies suggest that, unlike other protozoan parasites, Cryptosporidium is incapable of de novo pyrimidine biosynthesis. Curiously, these parasites possess redundant pathways to produce dTMP, one involving thymidine kinase (TK) and the second via thymidylate synthase-dihydrofolate reductase. Here we report the expression and characterization of TK from C. parvum. Unlike other TKs, CpTK is a stable trimer in the presence and absence of substrates and the activator dCTP. Whereas the values of k(cat) = 0.28 s(-1) and K(m)(,ATP) = 140 microm are similar to those of human TK1, the value of K(m)(thymidine) = 48 microm is 100-fold greater, reflecting the abundance of thymidine in the gastrointestinal tract. Surprisingly, the antiparasitic nucleosides AraT, AraC, and IDC are not substrates for CpTK, indicating that Cryptosporidium possesses another deoxynucleoside kinase. Trifluoromethyl thymidine and 5-fluorodeoxyuridine are good substrates for CpTK, and both compounds inhibit parasite growth in an in vitro model of C. parvum infection. Trifluorothymidine is also effective in a mouse model of acute disease. These observations suggest that CpTK-activated pro-drugs may be an effective strategy for treating cryptosporidiosis.

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