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从非人类感染性动基体寄生虫纤细无口虫中进行外泌体和复制因子C复合物的串联亲和纯化。

Tandem affinity purification of exosome and replication factor C complexes from the non-human infectious kinetoplastid parasite Crithidia fasciculata.

作者信息

Kipandula Wakisa, Smith Terry K, MacNeill Stuart A

机构信息

Biomedical Sciences Research Complex, University of St Andrews, North Haugh, St Andrews, Fife KY16 9ST, UK; Department of Biomedical Sciences, College of Medicine, University of Malawi, Private Bag 360, Chichiri, Blantyre 3, Malawi.

Biomedical Sciences Research Complex, University of St Andrews, North Haugh, St Andrews, Fife KY16 9ST, UK.

出版信息

Mol Biochem Parasitol. 2017 Oct;217:19-22. doi: 10.1016/j.molbiopara.2017.08.004. Epub 2017 Aug 24.

Abstract

Kinetoplastid parasites are responsible for a range of diseases with significant global impact. Trypanosoma brucei and Trypanosoma cruzi cause human African trypanosomiasis and Chagas disease, respectively, while various Leishmania species are responsible for cutaneous, mucocutaneous and visceral leishmaniasis. Understanding the biology of these organisms is key for effective diagnosis, prophylaxis and treatment. The insect parasite Crithidia fasciculata offers a safe and low-cost alternative for studies of kinetoplastid biology. C. fasciculata does not infect humans, can be cultured to high yields in inexpensive serum-free medium in a standard laboratory, and has a completely sequenced publically available genome. Taking advantage of these features, however, requires the adaptation of existing methods of analysis to C. fasciculata. Tandem affinity purification is a widely used method that allows for the rapid purification of intact protein complexes under native conditions. Here we report the application of tandem affinity purification to C. fasciculata for the first time, demonstrating the effectiveness of the technique by purifying both the intact exosome and replication factor C complexes. Adding tandem affinity purification to the C. fasciculata toolbox significantly enhances the utility of this excellent model system.

摘要

动质体寄生虫可引发一系列对全球具有重大影响的疾病。布氏锥虫和克氏锥虫分别导致人类非洲锥虫病和恰加斯病,而多种利什曼原虫则引发皮肤利什曼病、黏膜皮肤利什曼病和内脏利什曼病。了解这些生物体的生物学特性是有效诊断、预防和治疗的关键。昆虫寄生虫束状短膜虫为动质体生物学研究提供了一种安全且低成本的替代选择。束状短膜虫不会感染人类,在标准实验室中可在廉价的无血清培养基中大量培养,并拥有一个已完全测序且公开可用的基因组。然而,要利用这些特性,需要对现有的分析方法进行调整以适用于束状短膜虫。串联亲和纯化是一种广泛使用的方法,可在天然条件下快速纯化完整的蛋白质复合物。在此,我们首次报告了串联亲和纯化在束状短膜虫中的应用,通过纯化完整的外泌体和复制因子C复合物证明了该技术的有效性。将串联亲和纯化添加到束状短膜虫的工具库中显著增强了这个优秀模型系统的实用性。

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