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An Archaeal Immune System Can Detect Multiple Protospacer Adjacent Motifs (PAMs) to Target Invader DNA
Authors:Susan Fischer  Lisa-Katharina Maier  Britta Stoll  Jutta Brendel  Eike Fischer  Friedhelm Pfeiffer  Mike Dyall-Smith  Anita Marchfelder
Institution:From the Department of Biology II, Ulm University, 89069 Ulm, Germany, ;§Department of Membrane Biochemistry, Max-Planck-Institute of Biochemistry, 82152 Martinsried, Germany, and ;School of Biomedical Sciences, Charles Sturt University, 2678 New South Wales, Australia
Abstract:The clustered regularly interspaced short palindromic repeat (CRISPR)/CRISPR-associated (Cas) system provides adaptive and heritable immunity against foreign genetic elements in most archaea and many bacteria. Although this system is widespread and diverse with many subtypes, only a few species have been investigated to elucidate the precise mechanisms for the defense of viruses or plasmids. Approximately 90% of all sequenced archaea encode CRISPR/Cas systems, but their molecular details have so far only been examined in three archaeal species: Sulfolobus solfataricus, Sulfolobus islandicus, and Pyrococcus furiosus. Here, we analyzed the CRISPR/Cas system of Haloferax volcanii using a plasmid-based invader assay. Haloferax encodes a type I-B CRISPR/Cas system with eight Cas proteins and three CRISPR loci for which the identity of protospacer adjacent motifs (PAMs) was unknown until now. We identified six different PAM sequences that are required upstream of the protospacer to permit target DNA recognition. This is only the second archaeon for which PAM sequences have been determined, and the first CRISPR group with such a high number of PAM sequences. Cells could survive the plasmid challenge if their CRISPR/Cas system was altered or defective, e.g. by deletion of the cas gene cassette. Experimental PAM data were supplemented with bioinformatics data on Haloferax and Haloquadratum.
Keywords:Archaea  Microbiology  RNA  RNA Metabolism  RNA Processing  CRISPR/Cas  Haloferax volcanii  PAM
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