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Structural and biochemical insights into CRISPR RNA processing by the Cas5c ribonuclease SMU1763 from Streptococcus mutans

The cariogenic pathogen Streptococcus mutans contains two CRISPR systems (type I-C and type II-A) with the Cas5c protein (SmuCas5c) involved in processing of long CRISPR RNA transcripts (pre-crRNA) containing repeats and spacers to mature crRNA guides. In this study, we determined the crystal struct...

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Autores principales: Lemak, Sofia, Serbanescu, M. Anca, Khusnutdinova, Anna N., Ruszkowski, Milosz, Beloglazova, Natalia, Xu, Xiaohui, Brown, Greg, Cui, Hong, Tan, Kemin, Joachimiak, Andrzej, Cvitkovitch, Dennis G., Savchenko, Alexei, Yakunin, Alexander F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8524198/
https://www.ncbi.nlm.nih.gov/pubmed/34592310
http://dx.doi.org/10.1016/j.jbc.2021.101251
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author Lemak, Sofia
Serbanescu, M. Anca
Khusnutdinova, Anna N.
Ruszkowski, Milosz
Beloglazova, Natalia
Xu, Xiaohui
Brown, Greg
Cui, Hong
Tan, Kemin
Joachimiak, Andrzej
Cvitkovitch, Dennis G.
Savchenko, Alexei
Yakunin, Alexander F.
author_facet Lemak, Sofia
Serbanescu, M. Anca
Khusnutdinova, Anna N.
Ruszkowski, Milosz
Beloglazova, Natalia
Xu, Xiaohui
Brown, Greg
Cui, Hong
Tan, Kemin
Joachimiak, Andrzej
Cvitkovitch, Dennis G.
Savchenko, Alexei
Yakunin, Alexander F.
author_sort Lemak, Sofia
collection PubMed
description The cariogenic pathogen Streptococcus mutans contains two CRISPR systems (type I-C and type II-A) with the Cas5c protein (SmuCas5c) involved in processing of long CRISPR RNA transcripts (pre-crRNA) containing repeats and spacers to mature crRNA guides. In this study, we determined the crystal structure of SmuCas5c at a resolution of 1.72 Å, which revealed the presence of an N-terminal modified RNA recognition motif and a C-terminal twisted β-sheet domain with four bound sulphate molecules. Analysis of surface charge and residue conservation of the SmuCas5c structure suggested the location of an RNA-binding site in a shallow groove formed by the RNA recognition motif domain with several conserved positively charged residues (Arg39, Lys52, Arg109, Arg127, and Arg134). Purified SmuCas5c exhibited metal-independent ribonuclease activity against single-stranded pre-CRISPR RNAs containing a stem–loop structure with a seven-nucleotide stem and a pentaloop. We found SmuCas5c cleaves substrate RNA within the repeat sequence at a single cleavage site located at the 3′-base of the stem but shows significant tolerance to substrate sequence variations downstream of the cleavage site. Structure-based mutational analysis revealed that the conserved residues Tyr50, Lys120, and His121 comprise the SmuCas5c catalytic residues. In addition, site-directed mutagenesis of positively charged residues Lys52, Arg109, and Arg134 located near the catalytic triad had strong negative effects on the RNase activity of this protein, suggesting that these residues are involved in RNA binding. Taken together, our results reveal functional diversity of Cas5c ribonucleases and provide further insight into the molecular mechanisms of substrate selectivity and activity of these enzymes.
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spelling pubmed-85241982021-10-25 Structural and biochemical insights into CRISPR RNA processing by the Cas5c ribonuclease SMU1763 from Streptococcus mutans Lemak, Sofia Serbanescu, M. Anca Khusnutdinova, Anna N. Ruszkowski, Milosz Beloglazova, Natalia Xu, Xiaohui Brown, Greg Cui, Hong Tan, Kemin Joachimiak, Andrzej Cvitkovitch, Dennis G. Savchenko, Alexei Yakunin, Alexander F. J Biol Chem Research Article The cariogenic pathogen Streptococcus mutans contains two CRISPR systems (type I-C and type II-A) with the Cas5c protein (SmuCas5c) involved in processing of long CRISPR RNA transcripts (pre-crRNA) containing repeats and spacers to mature crRNA guides. In this study, we determined the crystal structure of SmuCas5c at a resolution of 1.72 Å, which revealed the presence of an N-terminal modified RNA recognition motif and a C-terminal twisted β-sheet domain with four bound sulphate molecules. Analysis of surface charge and residue conservation of the SmuCas5c structure suggested the location of an RNA-binding site in a shallow groove formed by the RNA recognition motif domain with several conserved positively charged residues (Arg39, Lys52, Arg109, Arg127, and Arg134). Purified SmuCas5c exhibited metal-independent ribonuclease activity against single-stranded pre-CRISPR RNAs containing a stem–loop structure with a seven-nucleotide stem and a pentaloop. We found SmuCas5c cleaves substrate RNA within the repeat sequence at a single cleavage site located at the 3′-base of the stem but shows significant tolerance to substrate sequence variations downstream of the cleavage site. Structure-based mutational analysis revealed that the conserved residues Tyr50, Lys120, and His121 comprise the SmuCas5c catalytic residues. In addition, site-directed mutagenesis of positively charged residues Lys52, Arg109, and Arg134 located near the catalytic triad had strong negative effects on the RNase activity of this protein, suggesting that these residues are involved in RNA binding. Taken together, our results reveal functional diversity of Cas5c ribonucleases and provide further insight into the molecular mechanisms of substrate selectivity and activity of these enzymes. American Society for Biochemistry and Molecular Biology 2021-09-28 /pmc/articles/PMC8524198/ /pubmed/34592310 http://dx.doi.org/10.1016/j.jbc.2021.101251 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Lemak, Sofia
Serbanescu, M. Anca
Khusnutdinova, Anna N.
Ruszkowski, Milosz
Beloglazova, Natalia
Xu, Xiaohui
Brown, Greg
Cui, Hong
Tan, Kemin
Joachimiak, Andrzej
Cvitkovitch, Dennis G.
Savchenko, Alexei
Yakunin, Alexander F.
Structural and biochemical insights into CRISPR RNA processing by the Cas5c ribonuclease SMU1763 from Streptococcus mutans
title Structural and biochemical insights into CRISPR RNA processing by the Cas5c ribonuclease SMU1763 from Streptococcus mutans
title_full Structural and biochemical insights into CRISPR RNA processing by the Cas5c ribonuclease SMU1763 from Streptococcus mutans
title_fullStr Structural and biochemical insights into CRISPR RNA processing by the Cas5c ribonuclease SMU1763 from Streptococcus mutans
title_full_unstemmed Structural and biochemical insights into CRISPR RNA processing by the Cas5c ribonuclease SMU1763 from Streptococcus mutans
title_short Structural and biochemical insights into CRISPR RNA processing by the Cas5c ribonuclease SMU1763 from Streptococcus mutans
title_sort structural and biochemical insights into crispr rna processing by the cas5c ribonuclease smu1763 from streptococcus mutans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8524198/
https://www.ncbi.nlm.nih.gov/pubmed/34592310
http://dx.doi.org/10.1016/j.jbc.2021.101251
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