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Defining the role of a FYVE domain in the localization and activity of a cAMP phosphodiesterase implicated in osmoregulation in Trypanosoma cruzi.确定 FYVE 结构域在参与调控锥虫渗透压的 cAMP 磷酸二酯酶的定位和活性中的作用。
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Natural and synthetic naphthoquinones active against Trypanosoma cruzi: an initial step towards new drugs for Chagas disease.天然和合成萘醌类化合物对 Trypanosoma cruzi 的活性:开发治疗恰加斯病新药的初步步骤。
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克氏锥虫磷酸二酯酶 C 的生物学和结构特征及其对寄生虫选择性抑制剂设计的意义。

Biological and structural characterization of Trypanosoma cruzi phosphodiesterase C and Implications for design of parasite selective inhibitors.

机构信息

Department of Biochemistry and Biophysics and Lineberger Comprehensive Cancer Center, University of North Carolina, Chapel Hill, North Carolina 27599-7260, USA

出版信息

J Biol Chem. 2012 Apr 6;287(15):11788-97. doi: 10.1074/jbc.M111.326777. Epub 2012 Feb 21.

DOI:10.1074/jbc.M111.326777
PMID:22356915
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3320927/
Abstract

Trypanosoma cruzi phosphodiesterase C (TcrPDEC) is a potential new drug target for the treatment of Chagas disease but has not been well studied. This study reports the enzymatic properties of various kinetoplastid PDECs and the crystal structures of the unliganded TcrPDEC1 catalytic domain and its complex with an inhibitor. Mutations of PDEC during the course of evolution led to inactivation of PDEC in Trypanosoma brucei/Trypanosoma evansi/Trypanosoma congolense, whereas the enzyme is active in all other kinetoplastids. The TcrPDEC1 catalytic domain hydrolyzes both cAMP and cGMP with a K(m) of 23.8 μm and a k(cat) of 31 s(-1) for cAMP and a K(m) of 99.1 μm and a k(cat) of 17 s(-1) for cGMP, thus confirming its dual specificity. The crystal structures show that the N-terminal fragment wraps around the TcrPDEC catalytic domain and may thus regulate its enzymatic activity via direct interactions with the active site residues. A PDE5 selective inhibitor that has an IC(50) of 230 nm for TcrPDEC1 binds to TcrPDEC1 in an orientation opposite to that of sildenafil. This observation, together with the screen of the inhibitory potency of human PDE inhibitors against TcrPDEC, implies that the scaffold of some human PDE inhibitors might be used as the starting model for design of parasite PDE inhibitors. The structural study also identified a unique parasite pocket that neighbors the active site and may thus be valuable for the design of parasite-specific inhibitors.

摘要

克氏锥虫磷酸二酯酶 C(TcrPDEC)是一种潜在的新型抗恰加斯病药物靶标,但尚未得到充分研究。本研究报告了各种动基体磷酸二酯酶的酶学性质,以及未结合配体的 TcrPDEC1 催化结构域及其与抑制剂复合物的晶体结构。在进化过程中,PDEC 的突变导致在布氏锥虫/伊氏锥虫/冈比亚锥虫中 PDEC 失活,而在所有其他动基体中该酶是活跃的。TcrPDEC1 催化结构域水解 cAMP 和 cGMP,对 cAMP 的 K(m)为 23.8 μm,k(cat)为 31 s(-1),对 cGMP 的 K(m)为 99.1 μm,k(cat)为 17 s(-1),从而证实其双重特异性。晶体结构表明,N 端片段环绕 TcrPDEC 催化结构域,因此可能通过与活性位点残基的直接相互作用来调节其酶活性。一种对 TcrPDEC1 的 IC(50)为 230 nm 的 PDE5 选择性抑制剂以与西地那非相反的方向结合到 TcrPDEC1。这一观察结果,加上对人 PDE 抑制剂抑制 TcrPDEC 的效力的筛选,表明一些人 PDE 抑制剂的支架可能被用作设计寄生虫 PDE 抑制剂的起始模型。结构研究还确定了一个与活性位点相邻的独特寄生虫口袋,因此可能对设计寄生虫特异性抑制剂具有重要价值。