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Spliceosomal Prp8 intein at the crossroads of protein and RNA splicing

The spliceosome is a large ribonucleoprotein complex that removes introns from pre-mRNAs. At its functional core lies the essential pre-mRNA processing factor 8 (Prp8) protein. Across diverse eukaryotes, this protein cofactor of RNA catalysis harbors a self-splicing element called an intein. Inteins...

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Autores principales: Green, Cathleen M., Li, Zhong, Smith, Aaron D., Novikova, Olga, Bacot-Davis, Valjean R., Gao, Fengshan, Hu, Saiyang, Banavali, Nilesh K., Thiele, Dennis J., Li, Hongmin, Belfort, Marlene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6805012/
https://www.ncbi.nlm.nih.gov/pubmed/31600193
http://dx.doi.org/10.1371/journal.pbio.3000104
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author Green, Cathleen M.
Li, Zhong
Smith, Aaron D.
Novikova, Olga
Bacot-Davis, Valjean R.
Gao, Fengshan
Hu, Saiyang
Banavali, Nilesh K.
Thiele, Dennis J.
Li, Hongmin
Belfort, Marlene
author_facet Green, Cathleen M.
Li, Zhong
Smith, Aaron D.
Novikova, Olga
Bacot-Davis, Valjean R.
Gao, Fengshan
Hu, Saiyang
Banavali, Nilesh K.
Thiele, Dennis J.
Li, Hongmin
Belfort, Marlene
author_sort Green, Cathleen M.
collection PubMed
description The spliceosome is a large ribonucleoprotein complex that removes introns from pre-mRNAs. At its functional core lies the essential pre-mRNA processing factor 8 (Prp8) protein. Across diverse eukaryotes, this protein cofactor of RNA catalysis harbors a self-splicing element called an intein. Inteins in Prp8 are extremely pervasive and are found at 7 different sites in various species. Here, we focus on the Prp8 intein from Cryptococcus neoformans (Cne), a human fungal pathogen. We solved the crystal structure of this intein, revealing structural homology among protein splicing sequences in eukaryotes, including the Hedgehog C terminus. Working with the Cne Prp8 intein in a reporter assay, we find that the biologically relevant divalent metals copper and zinc inhibit intein splicing, albeit by 2 different mechanisms. Copper likely stimulates reversible modifications on a catalytically important cysteine, whereas zinc binds at the terminal asparagine and the same critical cysteine. Importantly, we also show that copper treatment inhibits Prp8 protein splicing in Cne. Lastly, an intein-containing Prp8 precursor model is presented, suggesting that metal-induced protein splicing inhibition would disturb function of both Prp8 and the spliceosome. These results indicate that Prp8 protein splicing can be modulated, with potential functional implications for the spliceosome.
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spelling pubmed-68050122019-11-02 Spliceosomal Prp8 intein at the crossroads of protein and RNA splicing Green, Cathleen M. Li, Zhong Smith, Aaron D. Novikova, Olga Bacot-Davis, Valjean R. Gao, Fengshan Hu, Saiyang Banavali, Nilesh K. Thiele, Dennis J. Li, Hongmin Belfort, Marlene PLoS Biol Research Article The spliceosome is a large ribonucleoprotein complex that removes introns from pre-mRNAs. At its functional core lies the essential pre-mRNA processing factor 8 (Prp8) protein. Across diverse eukaryotes, this protein cofactor of RNA catalysis harbors a self-splicing element called an intein. Inteins in Prp8 are extremely pervasive and are found at 7 different sites in various species. Here, we focus on the Prp8 intein from Cryptococcus neoformans (Cne), a human fungal pathogen. We solved the crystal structure of this intein, revealing structural homology among protein splicing sequences in eukaryotes, including the Hedgehog C terminus. Working with the Cne Prp8 intein in a reporter assay, we find that the biologically relevant divalent metals copper and zinc inhibit intein splicing, albeit by 2 different mechanisms. Copper likely stimulates reversible modifications on a catalytically important cysteine, whereas zinc binds at the terminal asparagine and the same critical cysteine. Importantly, we also show that copper treatment inhibits Prp8 protein splicing in Cne. Lastly, an intein-containing Prp8 precursor model is presented, suggesting that metal-induced protein splicing inhibition would disturb function of both Prp8 and the spliceosome. These results indicate that Prp8 protein splicing can be modulated, with potential functional implications for the spliceosome. Public Library of Science 2019-10-10 /pmc/articles/PMC6805012/ /pubmed/31600193 http://dx.doi.org/10.1371/journal.pbio.3000104 Text en © 2019 Green et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Green, Cathleen M.
Li, Zhong
Smith, Aaron D.
Novikova, Olga
Bacot-Davis, Valjean R.
Gao, Fengshan
Hu, Saiyang
Banavali, Nilesh K.
Thiele, Dennis J.
Li, Hongmin
Belfort, Marlene
Spliceosomal Prp8 intein at the crossroads of protein and RNA splicing
title Spliceosomal Prp8 intein at the crossroads of protein and RNA splicing
title_full Spliceosomal Prp8 intein at the crossroads of protein and RNA splicing
title_fullStr Spliceosomal Prp8 intein at the crossroads of protein and RNA splicing
title_full_unstemmed Spliceosomal Prp8 intein at the crossroads of protein and RNA splicing
title_short Spliceosomal Prp8 intein at the crossroads of protein and RNA splicing
title_sort spliceosomal prp8 intein at the crossroads of protein and rna splicing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6805012/
https://www.ncbi.nlm.nih.gov/pubmed/31600193
http://dx.doi.org/10.1371/journal.pbio.3000104
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