Position-dependent sequence motif preferences of SpCas9 are largely determined by scaffold-complementary spacer motifs

Author:

Huszár Krisztina123,Welker Zsombor14,Györgypál Zoltán45,Tóth Eszter13,Ligeti Zoltán167,Kulcsár Péter István1,Dancsó János14,Tálas András1,Krausz Sarah Laura18,Varga Éva167,Welker Ervin16ORCID

Affiliation:

1. Institute of Enzymology, Research Centre for Natural Sciences , Budapest , Hungary

2. Department of Genetics, Doctoral School of Biology, Faculty of Science, Eötvös Loránd University , Budapest, H-1117, Hungary

3. Gene Design Ltd , Szeged , Hungary

4. Biospiral-2006 Ltd , Szeged , Hungary

5. Institute of Biophysics, Biological Research Centre , Szeged , Hungary

6. Institute of Biochemistry, Biological Research Centre , Szeged,  Hungary

7. Doctoral School of Multidisciplinary Medical Science, University of Szeged , Hungary

8. School of Ph.D. Studies, Semmelweis University , Budapest, Hungary

Abstract

AbstractStreptococcus pyogenes Cas9 (SpCas9) nuclease exhibits considerable position-dependent sequence preferences. The reason behind these preferences is not well understood and is difficult to rationalise, since the protein establishes interactions with the target-spacer duplex in a sequence-independent manner. We revealed here that intramolecular interactions within the single guide RNA (sgRNA), between the spacer and the scaffold, cause most of these preferences. By using in cellulo and in vitro SpCas9 activity assays with systematically designed spacer and scaffold sequences and by analysing activity data from a large SpCas9 sequence library, we show that some long (>8 nucleotides) spacer motifs, that are complementary to the RAR unit of the scaffold, interfere with sgRNA loading, and that some motifs of more than 4 nucleotides, that are complementary to the SL1 unit, inhibit DNA binding and cleavage. Furthermore, we show that intramolecular interactions are present in the majority of the inactive sgRNA sequences of the library, suggesting that they are the most important intrinsic determinants of the activity of the SpCas9 ribonucleoprotein complex. We also found that in pegRNAs, sequences at the 3′ extension of the sgRNA that are complementary to the SL2 unit are also inhibitory to prime editing, but not to the nuclease activity of SpCas9.

Funder

Ministry of National Economy

National Research, Development and Innovation Office

János Bolyai Research Scholarship of the Hungarian Academy of Sciences

Publisher

Oxford University Press (OUP)

Subject

Genetics

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