CRISPR-associated proteins (Cas1 and Cas2) integrate foreign DNA at the "leader" end of CRISPR loci. Several CRISPR leader sequences are reported to contain a binding site for a DNA-bending protein called integration host factor (IHF). IHF-induced DNA bending kinks the leader of type I-E CRISPRs, recruiting an upstream sequence motif that helps dock Cas1-2 onto the first repeat of the CRISPR locus. To determine the prevalence of IHF-directed CRISPR adaptation, we analyzed 15,274 bacterial and archaeal CRISPR leaders. These experiments reveal multiple IHF binding sites and diverse upstream sequence motifs in a subset of the I-C, I-E, I-F, and II-C CRISPR leaders. We identify subtype-specific motifs and show that the phase of these motifs is critical for CRISPR adaptation. Collectively, this work clarifies the prevalence and mechanism(s) of IHF-dependent CRISPR adaptation and suggests that leader sequences and adaptation proteins may coevolve under the selective pressures of foreign genetic elements like plasmids or phages.
Distribution and phasing of sequence motifs that facilitate CRISPR adaptation.
促进 CRISPR 适应的序列基序的分布和相位
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作者:Santiago-Frangos Andrew, Buyukyoruk Murat, Wiegand Tanner, Krishna Pushya, Wiedenheft Blake
| 期刊: | Current Biology | 影响因子: | 7.500 |
| 时间: | 2021 | 起止号: | 2021 Aug 23; 31(16):3515-3524 |
| doi: | 10.1016/j.cub.2021.05.068 | ||
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