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A high-resolution protein architecture of the budding yeast genome

The genome-wide protein architecture of chromatin that maintains chromosome integrity and gene regulation is ill-defined. Here we use ChIP-exo/seq(1,2) to define this structure in Saccharomyces. We identified 21 ensembles consisting of ~400 different proteins related to DNA replication, centromeres,...

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Autores principales: Rossi, Matthew J., Kuntala, Prashant K., Lai, William K.M., Yamada, Naomi, Badjatia, Nitika, Mittal, Chitvan, Kuzu, Guray, Bocklund, Kylie, Farrell, Nina P., Blanda, Thomas R., Mairose, Joshua D., Basting, Ann V., Mistretta, Katelyn S., Rocco, David J., Perkinson, Emily S., Kellogg, Gretta D., Mahony, Shaun, Pugh, B. Franklin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8035251/
https://www.ncbi.nlm.nih.gov/pubmed/33692541
http://dx.doi.org/10.1038/s41586-021-03314-8
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author Rossi, Matthew J.
Kuntala, Prashant K.
Lai, William K.M.
Yamada, Naomi
Badjatia, Nitika
Mittal, Chitvan
Kuzu, Guray
Bocklund, Kylie
Farrell, Nina P.
Blanda, Thomas R.
Mairose, Joshua D.
Basting, Ann V.
Mistretta, Katelyn S.
Rocco, David J.
Perkinson, Emily S.
Kellogg, Gretta D.
Mahony, Shaun
Pugh, B. Franklin
author_facet Rossi, Matthew J.
Kuntala, Prashant K.
Lai, William K.M.
Yamada, Naomi
Badjatia, Nitika
Mittal, Chitvan
Kuzu, Guray
Bocklund, Kylie
Farrell, Nina P.
Blanda, Thomas R.
Mairose, Joshua D.
Basting, Ann V.
Mistretta, Katelyn S.
Rocco, David J.
Perkinson, Emily S.
Kellogg, Gretta D.
Mahony, Shaun
Pugh, B. Franklin
author_sort Rossi, Matthew J.
collection PubMed
description The genome-wide protein architecture of chromatin that maintains chromosome integrity and gene regulation is ill-defined. Here we use ChIP-exo/seq(1,2) to define this structure in Saccharomyces. We identified 21 ensembles consisting of ~400 different proteins related to DNA replication, centromeres, subtelomeres, transposons, and RNA polymerase (Pol) I, II, and III transcription. Replication proteins engulfed a nucleosome, centromeres lacked a nucleosome, and repressive proteins encompassed three nucleosomes at subtelomeric X-elements. We find that most Pol II promoters evolved to lack a regulatory region, having only a core promoter. These constitutive promoters comprised a short nucleosome-free region (NFR) adjacent to a +1 nucleosome, which together bound TFIID to form a preinitiation complex (PIC). Positioned insulators protected core promoters from upstream events. A small fraction of promoters were architected for inducibility, wherein sequence-specific transcription factors (TFs) create a nucleosome-depleted region (NDR) that is distinct from NFRs. We describe TF structural interactions with the genome and cognate cofactors, including nucleosomal and transcriptional regulators RPD3-L, SAGA, NuA4, Tup1, Mediator, and SWI-SNF. Surprisingly, we do not detect TF-TFIID interactions, suggesting that they do not stably occur. Our model for gene induction involves TFs, cofactors, and general factors like TBP and TFIIB, but not TFIID. However, constitutive transcription involves TFIID but not TFs and cofactors. From this we define a highly integrated network of TF-regulated transcription.
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spelling pubmed-80352512021-09-10 A high-resolution protein architecture of the budding yeast genome Rossi, Matthew J. Kuntala, Prashant K. Lai, William K.M. Yamada, Naomi Badjatia, Nitika Mittal, Chitvan Kuzu, Guray Bocklund, Kylie Farrell, Nina P. Blanda, Thomas R. Mairose, Joshua D. Basting, Ann V. Mistretta, Katelyn S. Rocco, David J. Perkinson, Emily S. Kellogg, Gretta D. Mahony, Shaun Pugh, B. Franklin Nature Article The genome-wide protein architecture of chromatin that maintains chromosome integrity and gene regulation is ill-defined. Here we use ChIP-exo/seq(1,2) to define this structure in Saccharomyces. We identified 21 ensembles consisting of ~400 different proteins related to DNA replication, centromeres, subtelomeres, transposons, and RNA polymerase (Pol) I, II, and III transcription. Replication proteins engulfed a nucleosome, centromeres lacked a nucleosome, and repressive proteins encompassed three nucleosomes at subtelomeric X-elements. We find that most Pol II promoters evolved to lack a regulatory region, having only a core promoter. These constitutive promoters comprised a short nucleosome-free region (NFR) adjacent to a +1 nucleosome, which together bound TFIID to form a preinitiation complex (PIC). Positioned insulators protected core promoters from upstream events. A small fraction of promoters were architected for inducibility, wherein sequence-specific transcription factors (TFs) create a nucleosome-depleted region (NDR) that is distinct from NFRs. We describe TF structural interactions with the genome and cognate cofactors, including nucleosomal and transcriptional regulators RPD3-L, SAGA, NuA4, Tup1, Mediator, and SWI-SNF. Surprisingly, we do not detect TF-TFIID interactions, suggesting that they do not stably occur. Our model for gene induction involves TFs, cofactors, and general factors like TBP and TFIIB, but not TFIID. However, constitutive transcription involves TFIID but not TFs and cofactors. From this we define a highly integrated network of TF-regulated transcription. 2021-03-10 2021-04 /pmc/articles/PMC8035251/ /pubmed/33692541 http://dx.doi.org/10.1038/s41586-021-03314-8 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Rossi, Matthew J.
Kuntala, Prashant K.
Lai, William K.M.
Yamada, Naomi
Badjatia, Nitika
Mittal, Chitvan
Kuzu, Guray
Bocklund, Kylie
Farrell, Nina P.
Blanda, Thomas R.
Mairose, Joshua D.
Basting, Ann V.
Mistretta, Katelyn S.
Rocco, David J.
Perkinson, Emily S.
Kellogg, Gretta D.
Mahony, Shaun
Pugh, B. Franklin
A high-resolution protein architecture of the budding yeast genome
title A high-resolution protein architecture of the budding yeast genome
title_full A high-resolution protein architecture of the budding yeast genome
title_fullStr A high-resolution protein architecture of the budding yeast genome
title_full_unstemmed A high-resolution protein architecture of the budding yeast genome
title_short A high-resolution protein architecture of the budding yeast genome
title_sort high-resolution protein architecture of the budding yeast genome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8035251/
https://www.ncbi.nlm.nih.gov/pubmed/33692541
http://dx.doi.org/10.1038/s41586-021-03314-8
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