Hyper-stimulation of Pyrococcus furiosus CRISPR DNA uptake by a self-transmissible plasmid.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2022-11-16 DOI:10.1007/s00792-022-01281-0
Elizabeth A Watts, Sandra C Garrett, Ryan J Catchpole, Landon M Clark, Brenton R Graveley, Michael P Terns
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Abstract

Pyrococcus furiosus is a hyperthermophilic archaeon with three effector CRISPR complexes (types I-A, I-B, and III-B) that each employ crRNAs derived from seven CRISPR arrays. Here, we investigate the CRISPR adaptation response to a newly discovered and self-transmissible plasmid, pT33.3. Transconjugant strains of Pyrococcus furiosus exhibited dramatically elevated levels of new spacer integration at CRISPR loci relative to the strain harboring a commonly employed, laboratory-constructed plasmid. High-throughput sequence analysis demonstrated that the vast majority of the newly acquired spacers were preferentially selected from DNA surrounding a particular region of the pT33.3 plasmid and exhibited a bi-directional pattern of strand bias that is a hallmark of primed adaptation by type I systems. We observed that one of the CRISPR arrays of our Pyrococcus furiosus laboratory strain encodes a spacer that closely matches the region of the conjugative plasmid that is targeted for adaptation. The hyper-adaptation phenotype was found to strictly depend both on the presence of this single matching spacer as well as the I-B effector complex, known to mediate primed adaptation. Our results indicate that Pyrococcus furiosus naturally encountered this conjugative plasmid or a related mobile genetic element in the past and responds to reinfection with robust primed adaptation.

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自传播质粒对暴怒火球菌 CRISPR DNA 摄取的过度刺激。
暴怒火球菌(Pyrococcus furiosus)是一种超嗜热古菌,具有三种效应 CRISPR 复合物(I-A 型、I-B 型和 III-B 型),每种复合物都采用了源自七个 CRISPR 阵列的 crRNA。在这里,我们研究了 CRISPR 对新发现的自传播质粒 pT33.3 的适应反应。与携带实验室构建的常用质粒的菌株相比,暴怒火球菌的转接菌株在 CRISPR 位点上的新间隔整合水平显著提高。高通量序列分析表明,绝大多数新获得的间隔子都优先选择自 pT33.3 质粒特定区域周围的 DNA,并表现出双向的链偏向模式,这是 I 型系统引物适应的标志。我们观察到,我们的暴热球菌实验室菌株的一个 CRISPR 阵列编码的间隔物与共轭质粒的适应目标区域非常匹配。研究发现,超适应表型严格依赖于该单一匹配间隔物以及 I-B 效应器复合物的存在,而已知的 I-B 效应器复合物可介导引物适应。我们的研究结果表明,暴怒火球菌过去曾自然遇到过这种共轭质粒或相关的移动遗传因子,并对再感染做出了强有力的启动适应反应。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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