Institute of Molecular Genetics, National Research Centre 'Kurchatov Institute', Moscow 123182, Russia.
Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125, USA.
Nucleic Acids Res. 2021 Apr 19;49(7):4054-4065. doi: 10.1093/nar/gkab182.
Argonaute proteins are programmable nucleases that are found in both eukaryotes and prokaryotes and provide defense against invading genetic elements. Although some prokaryotic argonautes (pAgos) were shown to recognize RNA targets in vitro, the majority of studied pAgos have strict specificity toward DNA, which limits their practical use in RNA-centric applications. Here, we describe a unique pAgo nuclease, KmAgo, from the mesophilic bacterium Kurthia massiliensis that can be programmed with either DNA or RNA guides and can precisely cleave both DNA and RNA targets. KmAgo binds 16-20 nt long 5'-phosphorylated guide molecules with no strict specificity for their sequence and is active in a wide range of temperatures. In bacterial cells, KmAgo is loaded with small DNAs with no obvious sequence preferences suggesting that it can uniformly target genomic sequences. Mismatches between the guide and target sequences greatly affect the efficiency and precision of target cleavage, depending on the mismatch position and the nature of the reacting nucleic acids. Target RNA cleavage by KmAgo depends on the formation of secondary structure indicating that KmAgo can be used for structural probing of RNA. These properties of KmAgo open the way for its use for highly specific nucleic acid detection and cleavage.
Argonaute 蛋白是一种可编程的核酸内切酶,存在于真核生物和原核生物中,可提供针对入侵遗传元件的防御。虽然一些原核 Argonaute(pAgos)已被证明可在体外识别 RNA 靶标,但大多数已研究的 pAgos 对 DNA 具有严格的特异性,这限制了它们在以 RNA 为中心的应用中的实际用途。在这里,我们描述了一种来自嗜温细菌 Kurthia massiliensis 的独特的 pAgo 核酸内切酶 KmAgo,它可以用 DNA 或 RNA 向导编程,并且可以精确切割 DNA 和 RNA 靶标。KmAgo 与没有严格序列特异性的 5'-磷酸化的 16-20 个核苷酸长的向导分子结合,并且在很宽的温度范围内具有活性。在细菌细胞中,KmAgo 与没有明显序列偏好的小 DNA 结合,这表明它可以均匀地靶向基因组序列。向导和靶序列之间的错配极大地影响靶标切割的效率和精度,具体取决于错配位置和反应核酸的性质。KmAgo 对靶 RNA 的切割依赖于二级结构的形成,这表明 KmAgo 可用于 RNA 的结构探测。KmAgo 的这些特性为其用于高度特异性核酸检测和切割开辟了道路。