Journal: Mol Cell / Year: 2020 Title: Diverse CRISPR-Cas Complexes Require Independent Translation of Small and Large Subunits from a Single Gene. Authors: Tess M McBride / Evan A Schwartz / Abhishek Kumar / David W Taylor / Peter C Fineran / Robert D Fagerlund / Abstract: CRISPR-Cas adaptive immune systems provide prokaryotes with defense against viruses by degradation of specific invading nucleic acids. Despite advances in the biotechnological exploitation of select ...CRISPR-Cas adaptive immune systems provide prokaryotes with defense against viruses by degradation of specific invading nucleic acids. Despite advances in the biotechnological exploitation of select systems, multiple CRISPR-Cas types remain uncharacterized. Here, we investigated the previously uncharacterized type I-D interference complex and revealed that it is a genetic and structural hybrid with similarity to both type I and type III systems. Surprisingly, formation of the functional complex required internal in-frame translation of small subunits from within the large subunit gene. We further show that internal translation to generate small subunits is widespread across diverse type I-D, I-B, and I-C systems, which account for roughly one quarter of CRISPR-Cas systems. Our work reveals the unexpected expansion of protein coding potential from within single cas genes, which has important implications for understanding CRISPR-Cas function and evolution.
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Oct 28, 2020
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Dec 9, 2020
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Dec 9, 2020
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Dec 30, 2020
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Dec 30, 2020
Processing site: RCSB / Status: Released
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