A novel family of sequence-specific endoribonucleases associated with the clustered regularly interspaced short palindromic repeats

作者:Beloglazova Natalia; Brown Greg; Zimmerman Matthew D; Proudfoot Michael; Makarova Kira S; Kudritska Marina; Kochinyan Samvel; Wang Shuren; Chruszcz Maksymilian; Minor Wladek; Koonin Eugene V; Edwards Aled M; Savchenko Alexei; Yakunin Alexander F*
来源:Journal of Biological Chemistry, 2008, 283(29): 20361-20371.
DOI:10.1074/jbc.M803225200

摘要

Clustered regularly interspaced short palindromic repeats (CRISPRs) together with the associated CAS proteins protect microbial cells from invasion by foreign genetic elements using presently unknown molecular mechanisms. All CRISPR systems contain proteins of the CAS2 family, suggesting that these uncharacterized proteins play a central role in this process. Here we show that the CAS2 proteins represent a novel family of endoribonucleases. Six purified CAS2 proteins from diverse organisms cleaved single-stranded RNAs preferentially within U-rich regions. A representative CAS2 enzyme, SSO1404 from Sulfolobus solfataricus, cleaved the phosphodiester linkage on the 3'-side and generated 5'-phosphate- and 3'-hydroxyl-terminated oligonucleotides. The crystal structure of SSO1404 was solved at 1.6 angstrom resolution revealing the first ribonuclease with a ferredoxin-like fold. Mutagenesis of SSO1404 identified six residues (Tyr-9, Asp-10, Arg-17, Arg-19, Arg-31, and Phe-37) that are important for enzymatic activity and suggested that Asp-10 might be the principal catalytic residue. Thus, CAS2 proteins are sequence-specific endoribonucleases, and we propose that their role in the CRISPR-mediated anti-phage defense might involve degradation of phage or cellular mRNAs.

  • 出版日期2008-7-18