Direct Characterization of Transcription Elongation by RNA Polymerase I.

RNA polymerase I (Pol I) transcribes ribosomal DNA and is responsible for more than 60% of transcription in a growing cell. Despite this fundamental role that directly impacts cell growth and proliferation, the kinetics of transcription by Pol I are poorly understood. This study provides direct char...

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Main Authors: Suleyman Ucuncuoglu, Krysta L Engel, Prashant K Purohit, David D Dunlap, David A Schneider, Laura Finzi
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4959687?pdf=render
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spelling doaj-b7724d73b3174389913e42b586c6758c2020-11-25T02:05:56ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01117e015952710.1371/journal.pone.0159527Direct Characterization of Transcription Elongation by RNA Polymerase I.Suleyman UcuncuogluKrysta L EngelPrashant K PurohitDavid D DunlapDavid A SchneiderLaura FinziRNA polymerase I (Pol I) transcribes ribosomal DNA and is responsible for more than 60% of transcription in a growing cell. Despite this fundamental role that directly impacts cell growth and proliferation, the kinetics of transcription by Pol I are poorly understood. This study provides direct characterization of S. Cerevisiae Pol I transcription elongation using tethered particle microscopy (TPM). Pol I was shown to elongate at an average rate of approximately 20 nt/s. However, the maximum speed observed was, in average, about 60 nt/s, comparable to the rate calculated based on the in vivo number of active genes, the cell division rate and the number of engaged polymerases observed in EM images. Addition of RNA endonucleases to the TPM elongation assays enhanced processivity. Together, these data suggest that additional transcription factors contribute to efficient and processive transcription elongation by RNA polymerase I in vivo.http://europepmc.org/articles/PMC4959687?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Suleyman Ucuncuoglu
Krysta L Engel
Prashant K Purohit
David D Dunlap
David A Schneider
Laura Finzi
spellingShingle Suleyman Ucuncuoglu
Krysta L Engel
Prashant K Purohit
David D Dunlap
David A Schneider
Laura Finzi
Direct Characterization of Transcription Elongation by RNA Polymerase I.
PLoS ONE
author_facet Suleyman Ucuncuoglu
Krysta L Engel
Prashant K Purohit
David D Dunlap
David A Schneider
Laura Finzi
author_sort Suleyman Ucuncuoglu
title Direct Characterization of Transcription Elongation by RNA Polymerase I.
title_short Direct Characterization of Transcription Elongation by RNA Polymerase I.
title_full Direct Characterization of Transcription Elongation by RNA Polymerase I.
title_fullStr Direct Characterization of Transcription Elongation by RNA Polymerase I.
title_full_unstemmed Direct Characterization of Transcription Elongation by RNA Polymerase I.
title_sort direct characterization of transcription elongation by rna polymerase i.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description RNA polymerase I (Pol I) transcribes ribosomal DNA and is responsible for more than 60% of transcription in a growing cell. Despite this fundamental role that directly impacts cell growth and proliferation, the kinetics of transcription by Pol I are poorly understood. This study provides direct characterization of S. Cerevisiae Pol I transcription elongation using tethered particle microscopy (TPM). Pol I was shown to elongate at an average rate of approximately 20 nt/s. However, the maximum speed observed was, in average, about 60 nt/s, comparable to the rate calculated based on the in vivo number of active genes, the cell division rate and the number of engaged polymerases observed in EM images. Addition of RNA endonucleases to the TPM elongation assays enhanced processivity. Together, these data suggest that additional transcription factors contribute to efficient and processive transcription elongation by RNA polymerase I in vivo.
url http://europepmc.org/articles/PMC4959687?pdf=render
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