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利用酵母蛋白质组微阵列系统分析乳铁蛋白 B 和组蛋白 5 的蛋白质靶标。

Systematical Analysis of the Protein Targets of Lactoferricin B and Histatin-5 Using Yeast Proteome Microarrays.

机构信息

Graduate Institute of Systems Biology and Bioinformatics, National Central University, Jhongli 32001, Taiwan.

Department of Biomedical Science and Engineering, National Central University, Jhongli 32001, Taiwan.

出版信息

Int J Mol Sci. 2019 Aug 28;20(17):4218. doi: 10.3390/ijms20174218.

Abstract

Antimicrobial peptides (AMPs) have potential antifungal activities; however, their intracellular protein targets are poorly reported. Proteome microarray is an effective tool with high-throughput and rapid platform that systematically identifies the protein targets. In this study, we have used yeast proteome microarrays for systematical identification of the yeast protein targets of Lactoferricin B (Lfcin B) and Histatin-5. A total of 140 and 137 protein targets were identified from the triplicate yeast proteome microarray assays for Lfcin B and Histatin-5, respectively. The Gene Ontology (GO) enrichment analysis showed that Lfcin B targeted more enrichment categories than Histatin-5 did in all GO biological processes, molecular functions, and cellular components. This might be one of the reasons that Lfcin B has a lower minimum inhibitory concentration (MIC) than Histatin-5. Moreover, pairwise essential proteins that have lethal effects on yeast were analyzed through synthetic lethality. A total of 11 synthetic lethal pairs were identified within the protein targets of Lfcin B. However, only three synthetic lethal pairs were identified within the protein targets of Histatin-5. The higher number of synthetic lethal pairs identified within the protein targets of Lfcin B might also be the reason for Lfcin B to have lower MIC than Histatin-5. Furthermore, two synthetic lethal pairs were identified between the unique protein targets of Lfcin B and Histatin-5. Both the identified synthetic lethal pairs proteins are part of the Spt-Ada-Gcn5 acetyltransferase (SAGA) protein complex that regulates gene expression via histone modification. Identification of synthetic lethal pairs between Lfcin B and Histatin-5 and their involvement in the same protein complex indicated synergistic combination between Lfcin B and Histatin-5. This hypothesis was experimentally confirmed by growth inhibition assay.

摘要

抗菌肽(AMPs)具有潜在的抗真菌活性;然而,其细胞内蛋白质靶标报道甚少。蛋白质组微阵列是一种有效的高通量、快速平台工具,可系统地鉴定蛋白质靶标。在这项研究中,我们使用酵母蛋白质组微阵列系统地鉴定了乳铁蛋白 B(Lfcin B)和组蛋白-5 的酵母蛋白靶标。分别从重复的酵母蛋白质组微阵列实验中鉴定出了 140 和 137 个蛋白质靶标。基因本体论(GO)富集分析显示,Lfcin B 比 Histatin-5 在所有 GO 生物过程、分子功能和细胞成分中靶向更多的富集类别。这可能是 Lfcin B 的最小抑菌浓度(MIC)低于 Histatin-5 的原因之一。此外,通过合成致死性分析对靶向酵母的必需蛋白进行了两两分析。在 Lfcin B 的蛋白质靶标中总共鉴定出 11 对具有致死效应的合成致死对。然而,在 Histatin-5 的蛋白质靶标中仅鉴定出 3 对合成致死对。在 Lfcin B 的蛋白质靶标中鉴定出的合成致死对数量较多,这也可能是 Lfcin B 的 MIC 低于 Histatin-5 的原因之一。此外,在 Lfcin B 和 Histatin-5 的独特蛋白质靶标之间还鉴定出了两对合成致死对。这两对合成致死对蛋白都是 Spt-Ada-Gcn5 乙酰转移酶(SAGA)蛋白复合物的一部分,该复合物通过组蛋白修饰调节基因表达。鉴定出 Lfcin B 和 Histatin-5 之间的合成致死对及其在同一蛋白质复合物中的参与表明 Lfcin B 和 Histatin-5 之间存在协同组合。通过生长抑制实验证实了这一假设。

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