Department of Physics, Faculty of Science, University of Split, 21000, Split, Croatia.
Department of Life Sciences, University of Trieste, 34127, Trieste, Italy.
BMC Genomics. 2018 Nov 20;19(1):827. doi: 10.1186/s12864-018-5225-5.
Antimicrobial peptides (AMPs) are multifunctional effector molecules that often combine direct antimicrobial activities with signaling or immunomodulatory functions. The skin secretions of anurans contain a variety of such bioactive peptides. The identification of AMPs from frog species often requires sacrificing several specimens to obtain small quantities of crude peptides, followed by activity based fractionation to identify the active principles.
We report an efficient alternative approach to selectively amplify AMP-coding transcripts from very small amounts of tissue samples, based on RNA extraction and cDNA synthesis, followed by PCR amplification and high-throughput sequencing of size-selected amplicons. This protocol exploits the highly conserved signal peptide region of the AMP precursors from Ranidae, Hylidae and Bombinatoridae for the design of family-specific, forward degenerate primers, coupled with a reverse primer targeting the mRNA poly-A tail.
Analysis of the assembled sequencing output allowed to identify more than a hundred full-length mature peptides, mostly from Ranidae species, including several novel potential AMPs for functional characterization. This (i) confirms the effectiveness of the experimental approach and indicates points for protocol optimization to account for particular cases, and (ii) encourages the application of the same methodology to other multigenic AMP families, also from other genera, sharing common features as in anuran AMPs.
抗菌肽(AMPs)是多功能效应分子,通常将直接抗菌活性与信号转导或免疫调节功能结合在一起。两栖动物的皮肤分泌物中含有多种此类生物活性肽。从蛙类物种中鉴定 AMP 通常需要牺牲几个标本以获得少量粗肽,然后进行基于活性的分级分离以鉴定活性成分。
我们报告了一种有效的替代方法,可以从非常少量的组织样品中选择性扩增 AMP 编码转录本,该方法基于 RNA 提取和 cDNA 合成,然后进行大小选择的扩增子的 PCR 扩增和高通量测序。该方案利用了 Ranidae、Hylidae 和 Bombinatoridae 的 AMP 前体的高度保守信号肽区域,用于设计家族特异性的正向简并引物,并与针对 mRNA 多-A 尾巴的反向引物结合。
组装测序输出的分析允许鉴定出一百多种全长成熟肽,主要来自 Ranidae 物种,包括几种用于功能表征的新型潜在 AMP。这一方法(i)证实了实验方法的有效性,并指出了需要优化方案以适应特定情况的要点,(ii)鼓励将相同的方法应用于其他具有共同特征的多基因 AMP 家族,也包括其他属的 AMP。