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本文引用的文献

1
Genetic modification of the diarrhoeal pathogen Cryptosporidium parvum.腹泻病原体微小隐孢子虫的基因改造。
Nature. 2015 Jul 23;523(7561):477-80. doi: 10.1038/nature14651. Epub 2015 Jul 15.
2
Designing selective inhibitors for calcium-dependent protein kinases in apicomplexans.设计针对顶复门原虫中钙依赖性蛋白激酶的选择性抑制剂。
Trends Pharmacol Sci. 2015 Jul;36(7):452-60. doi: 10.1016/j.tips.2015.04.011. Epub 2015 May 20.
3
The calcium signaling toolkit of the Apicomplexan parasites Toxoplasma gondii and Plasmodium spp.顶复门寄生虫刚地弓形虫和疟原虫属的钙信号传导工具包
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4
A review of the global burden, novel diagnostics, therapeutics, and vaccine targets for cryptosporidium.隐孢子虫的全球负担、新型诊断方法、治疗方法及疫苗靶点综述
Lancet Infect Dis. 2015 Jan;15(1):85-94. doi: 10.1016/S1473-3099(14)70772-8. Epub 2014 Sep 29.
5
CDPKs of Cryptosporidium parvum--stage-specific expression in vitro.微小隐孢子虫钙依赖蛋白激酶的体外阶段特异性表达。
Parasitol Res. 2014 Jul;113(7):2525-33. doi: 10.1007/s00436-014-3902-0. Epub 2014 May 9.
6
Bumped kinase inhibitor 1294 treats established Toxoplasma gondii infection.撞击激酶抑制剂1294可治疗已有的弓形虫感染。
Antimicrob Agents Chemother. 2014 Jun;58(6):3547-9. doi: 10.1128/AAC.01823-13. Epub 2014 Mar 31.
7
Identification of Cryptosporidium parvum active chemical series by Repurposing the open access malaria box.通过重新利用开放获取的疟疾药物库鉴定微小隐孢子虫活性化学系列。
Antimicrob Agents Chemother. 2014 May;58(5):2731-9. doi: 10.1128/AAC.02641-13. Epub 2014 Feb 24.
8
Identification of mutations in TgMAPK1 of Toxoplasma gondii conferring resistance to 1NM-PP1.鉴定弓形虫 TgMAPK1 中的突变,这些突变赋予了对 1NM-PP1 的抗性。
Int J Parasitol Drugs Drug Resist. 2013 May 18;3:93-101. doi: 10.1016/j.ijpddr.2013.04.001. eCollection 2013 Dec.
9
A novel calcium-dependent protein kinase inhibitor as a lead compound for treating cryptosporidiosis.一种新型钙依赖性蛋白激酶抑制剂作为治疗隐孢子虫病的先导化合物。
J Infect Dis. 2013 Oct 15;208(8):1342-8. doi: 10.1093/infdis/jit327. Epub 2013 Jul 21.
10
Structure-guided inhibitor design expands the scope of analog-sensitive kinase technology.结构导向抑制剂设计拓展了模拟敏感激酶技术的应用范围。
ACS Chem Biol. 2013 Sep 20;8(9):1931-8. doi: 10.1021/cb400376p. Epub 2013 Jul 23.

吡唑并嘧啶衍生物对钙依赖性蛋白激酶1(CDPK1)的体外抑制作用与微小隐孢子虫在细胞培养中的生长敏感性无关。

Inhibition of Calcium-Dependent Protein Kinase 1 (CDPK1) In Vitro by Pyrazolopyrimidine Derivatives Does Not Correlate with Sensitivity of Cryptosporidium parvum Growth in Cell Culture.

作者信息

Kuhlenschmidt Theresa B, Rutaganira Florentine U, Long Shaojun, Tang Keliang, Shokat Kevan M, Kuhlenschmidt Mark S, Sibley L David

机构信息

Department of Pathobiology, University of Illinois College of Veterinary Medicine, Urbana, Illinois, USA.

Howard Hughes Medical Institute and Department of Cellular and Molecular Pharmacology, University of California, San Francisco, San Francisco, California, USA.

出版信息

Antimicrob Agents Chemother. 2015 Nov 9;60(1):570-9. doi: 10.1128/AAC.01915-15. Print 2016 Jan.

DOI:10.1128/AAC.01915-15
PMID:26552986
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4704151/
Abstract

Cryptosporidiosis is a serious diarrheal disease in immunocompromised patients and malnourished children, and treatment is complicated by a lack of adequate drugs. Recent studies suggest that the natural occurrence of a small gatekeeper residue in serine threonine calcium-dependent protein kinase 1 (CDPK1) of Cryptosporidium parvum might be exploited to target this enzyme and block parasite growth. Here were explored the potency with which a series of pyrazolopyrimidine analogs, which are selective for small gatekeeper kinases, inhibit C. parvum CDPK1 and block C. parvum growth in tissue culture in vitro. Although these compounds potently inhibited kinase activity in vitro, most had no effect on parasite growth. Moreover, among those that were active against parasite growth, there was a very poor correlation with their 50% inhibitory concentrations against the enzyme. Active compounds also had no effect on cell invasion, unlike the situation in Toxoplasma gondii, where these compounds block CDPK1, prevent microneme secretion, and disrupt cell invasion. These findings suggest that CPDK1 is not essential for C. parvum host cell invasion or growth and therefore that it is not the optimal target for therapeutic intervention. Nonetheless, several inhibitors with low micromolar 50% effective concentrations were identified, and these may affect other essential targets in C. parvum that are worthy of further exploration.

摘要

隐孢子虫病是免疫功能低下患者和营养不良儿童的一种严重腹泻疾病,且由于缺乏足够的药物,治疗变得复杂。最近的研究表明,微小隐孢子虫丝氨酸苏氨酸钙依赖性蛋白激酶1(CDPK1)中天然存在的一个小的守门残基可能被用于靶向该酶并阻断寄生虫生长。在此,我们研究了一系列对小守门激酶具有选择性的吡唑并嘧啶类似物抑制微小隐孢子虫CDPK1以及在体外组织培养中阻断微小隐孢子虫生长的效力。尽管这些化合物在体外能有效抑制激酶活性,但大多数对寄生虫生长没有影响。此外,在那些对寄生虫生长有活性的化合物中,它们对该酶的50%抑制浓度与其活性之间的相关性非常差。与弓形虫的情况不同,在弓形虫中这些化合物可阻断CDPK1、阻止微线体分泌并破坏细胞入侵,而活性化合物对微小隐孢子虫的细胞入侵也没有影响。这些发现表明,CPDK1对微小隐孢子虫的宿主细胞入侵或生长并非必不可少,因此它不是治疗干预的最佳靶点。尽管如此,我们鉴定出了几种50%有效浓度为低微摩尔的抑制剂,这些抑制剂可能会影响微小隐孢子虫中其他值得进一步探索的重要靶点。