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本文引用的文献

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An approach to correlate tandem mass spectral data of peptides with amino acid sequences in a protein database.一种将肽的串联质谱数据与蛋白质数据库中氨基酸序列相关联的方法。
J Am Soc Mass Spectrom. 1994 Nov;5(11):976-89. doi: 10.1016/1044-0305(94)80016-2.
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K11-linked polyubiquitination in cell cycle control revealed by a K11 linkage-specific antibody.K11 连接的多泛素化在细胞周期调控中的作用被一种 K11 连接特异性抗体揭示。
Mol Cell. 2010 Aug 13;39(3):477-84. doi: 10.1016/j.molcel.2010.07.001. Epub 2010 Jul 22.
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High-stringency tandem affinity purification of proteins conjugated to ubiquitin-like moieties.高严谨性串联亲和纯化法用于连接泛素样结构域的蛋白质。
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Refinements to label free proteome quantitation: how to deal with peptides shared by multiple proteins.无标记蛋白质组定量的改进:如何处理多个蛋白质共有的肽段。
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Drug discovery and assay development in the ubiquitin-proteasome system.泛素-蛋白酶体系统中的药物发现和测定法开发。
Biochem Soc Trans. 2010 Feb;38(Pt 1):14-20. doi: 10.1042/BST0380014.
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The red blood cell proteome and interactome: an update.红细胞蛋白质组学和相互作用组:更新。
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Efficient protection and isolation of ubiquitylated proteins using tandem ubiquitin-binding entities.利用串联泛素结合结构域实现泛素化蛋白的高效保护和隔离。
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Identification, analysis, and prediction of protein ubiquitination sites.鉴定、分析和预测蛋白质泛素化位点。
Proteins. 2010 Feb 1;78(2):365-80. doi: 10.1002/prot.22555.
9
Post-translational modifications in Plasmodium: more than you think!疟原虫中的翻译后修饰:比你想象的更多!
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Evolution of a malaria resistance gene in wild primates.野生灵长类动物中疟疾抗性基因的进化。
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解析人类疟疾寄生虫的泛素组。

Unraveling the ubiquitome of the human malaria parasite.

机构信息

Department of Cell Biology and Neuroscience, University of California, Riverside, California 92521, USA.

出版信息

J Biol Chem. 2011 Nov 18;286(46):40320-30. doi: 10.1074/jbc.M111.238790. Epub 2011 Sep 19.

DOI:10.1074/jbc.M111.238790
PMID:21930698
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3220526/
Abstract

Malaria is one of the deadliest infectious diseases worldwide. The most severe form is caused by the eukaryotic protozoan parasite Plasmodium falciparum. Recent studies have highlighted the importance of post-translational regulations for the parasite's progression throughout its life cycle, protein ubiquitylation being certainly one of the most abundant. The specificity of its components and the wide range of biological processes in which it is involved make the ubiquitylation pathway a promising source of suitable targets for anti-malarial drug development. Here, we combined immunofluorescent microscopy, biochemical assays, in silico prediction, and mass spectrometry analysis using the multidimensional protein identification technology, or MudPIT, to describe the P. falciparum ubiquitome. We found that ubiquitin conjugates are detected at every morphological stage of the parasite erythrocytic cycle. Furthermore, we detected that more than half of the parasite's proteome represents possible targets for ubiquitylation, especially proteins found to be present at the most replicative stage of the asexual cycle, the trophozoite stage. A large proportion of ubiquitin conjugates were also detected at the schizont stage, consistent with a cell activity slowdown to prepare for merozoite differentiation and invasion. Finally, for the first time in the human malaria parasite, our results strongly indicate the presence of heterologous mixed conjugations, SUMO/UB. This discovery suggests that sumoylated proteins may be regulated by ubiquitylation in P. falciparum. Altogether, our results present the first stepping stone toward a better understanding of ubiquitylation and its role(s) in the biology of the human malaria parasite.

摘要

疟疾是全球最致命的传染病之一。最严重的形式是由真核原生动物寄生虫疟原虫引起的。最近的研究强调了翻译后调控对于寄生虫在整个生命周期中进展的重要性,蛋白质泛素化肯定是其中最丰富的一种。其组成成分的特异性和广泛涉及的生物学过程使得泛素化途径成为抗疟药物开发的合适靶点的有希望的来源。在这里,我们结合免疫荧光显微镜、生化测定、计算机预测和多维蛋白质鉴定技术(MudPIT)的质谱分析,描述了疟原虫的泛素组。我们发现,泛素缀合物在寄生虫红细胞周期的每个形态阶段都被检测到。此外,我们还发现,超过一半的寄生虫蛋白质组可能是泛素化的靶标,特别是在无性周期的最复制阶段-滋养体阶段存在的蛋白质。在裂殖体阶段也检测到大量的泛素缀合物,这与细胞活动减缓以准备疟原虫分化和入侵相一致。最后,在人类疟原虫中,我们的结果首次强烈表明存在异源混合缀合物 SUMO/UB。这一发现表明,在疟原虫中,SUMO 修饰的蛋白质可能受到泛素化的调控。总之,我们的结果为更好地理解泛素化及其在人类疟原虫生物学中的作用迈出了第一步。