Cargando…

Structure-function analysis of fission yeast cleavage and polyadenylation factor (CPF) subunit Ppn1 and its interactions with Dis2 and Swd22

Fission yeast Cleavage and Polyadenylation Factor (CPF), a 13-subunit complex, executes the cotranscriptional 3’ processing of RNA polymerase II (Pol2) transcripts that precedes transcription termination. The three-subunit DPS sub-complex of CPF, consisting of a PP1-type phosphoprotein phosphatase D...

Descripción completa

Detalles Bibliográficos
Autores principales: Benjamin, Bradley, Sanchez, Ana M., Garg, Angad, Schwer, Beate, Shuman, Stewart
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7990198/
https://www.ncbi.nlm.nih.gov/pubmed/33711009
http://dx.doi.org/10.1371/journal.pgen.1009452
_version_ 1783669032183922688
author Benjamin, Bradley
Sanchez, Ana M.
Garg, Angad
Schwer, Beate
Shuman, Stewart
author_facet Benjamin, Bradley
Sanchez, Ana M.
Garg, Angad
Schwer, Beate
Shuman, Stewart
author_sort Benjamin, Bradley
collection PubMed
description Fission yeast Cleavage and Polyadenylation Factor (CPF), a 13-subunit complex, executes the cotranscriptional 3’ processing of RNA polymerase II (Pol2) transcripts that precedes transcription termination. The three-subunit DPS sub-complex of CPF, consisting of a PP1-type phosphoprotein phosphatase Dis2, a WD-repeat protein Swd22, and a putative phosphatase regulatory factor Ppn1, associates with the CPF core to form the holo-CPF assembly. Here we probed the functional, physical, and genetic interactions of DPS by focusing on the Ppn1 subunit, which mediates association of DPS with the core. Transcriptional profiling by RNA-seq defined limited but highly concordant sets of protein-coding genes that were dysregulated in ppn1Δ, swd22Δ and dis2Δ cells, which included the DPSΔ down-regulated phosphate homeostasis genes pho1 and pho84 that are controlled by lncRNA-mediated transcriptional interference. Essential and inessential modules of the 710-aa Ppn1 protein were defined by testing the effects of Ppn1 truncations in multiple genetic backgrounds in which Ppn1 is required for growth. An N-terminal 172-aa disordered region was dispensable and its deletion alleviated hypomorphic phenotypes caused by deleting C-terminal aa 640–710. A TFIIS-like domain (aa 173–330) was not required for viability but was important for Ppn1 activity in phosphate homeostasis. Distinct sites within Ppn1 for binding to Dis2 (spanning Ppn1 aa 506 to 532) and Swd22 (from Ppn1 aa 533 to 578) were demarcated by yeast two-hybrid assays. Dis2 interaction-defective missense mutants of full-length Ppn1 (that retained Swd22 interaction) were employed to show that binding to Dis2 (or its paralog Sds21) was necessary for Ppn1 biological activity. Ppn1 function was severely compromised by missense mutations that selectively affected its binding to Swd22.
format Online
Article
Text
id pubmed-7990198
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-79901982021-04-05 Structure-function analysis of fission yeast cleavage and polyadenylation factor (CPF) subunit Ppn1 and its interactions with Dis2 and Swd22 Benjamin, Bradley Sanchez, Ana M. Garg, Angad Schwer, Beate Shuman, Stewart PLoS Genet Research Article Fission yeast Cleavage and Polyadenylation Factor (CPF), a 13-subunit complex, executes the cotranscriptional 3’ processing of RNA polymerase II (Pol2) transcripts that precedes transcription termination. The three-subunit DPS sub-complex of CPF, consisting of a PP1-type phosphoprotein phosphatase Dis2, a WD-repeat protein Swd22, and a putative phosphatase regulatory factor Ppn1, associates with the CPF core to form the holo-CPF assembly. Here we probed the functional, physical, and genetic interactions of DPS by focusing on the Ppn1 subunit, which mediates association of DPS with the core. Transcriptional profiling by RNA-seq defined limited but highly concordant sets of protein-coding genes that were dysregulated in ppn1Δ, swd22Δ and dis2Δ cells, which included the DPSΔ down-regulated phosphate homeostasis genes pho1 and pho84 that are controlled by lncRNA-mediated transcriptional interference. Essential and inessential modules of the 710-aa Ppn1 protein were defined by testing the effects of Ppn1 truncations in multiple genetic backgrounds in which Ppn1 is required for growth. An N-terminal 172-aa disordered region was dispensable and its deletion alleviated hypomorphic phenotypes caused by deleting C-terminal aa 640–710. A TFIIS-like domain (aa 173–330) was not required for viability but was important for Ppn1 activity in phosphate homeostasis. Distinct sites within Ppn1 for binding to Dis2 (spanning Ppn1 aa 506 to 532) and Swd22 (from Ppn1 aa 533 to 578) were demarcated by yeast two-hybrid assays. Dis2 interaction-defective missense mutants of full-length Ppn1 (that retained Swd22 interaction) were employed to show that binding to Dis2 (or its paralog Sds21) was necessary for Ppn1 biological activity. Ppn1 function was severely compromised by missense mutations that selectively affected its binding to Swd22. Public Library of Science 2021-03-12 /pmc/articles/PMC7990198/ /pubmed/33711009 http://dx.doi.org/10.1371/journal.pgen.1009452 Text en © 2021 Benjamin 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
Benjamin, Bradley
Sanchez, Ana M.
Garg, Angad
Schwer, Beate
Shuman, Stewart
Structure-function analysis of fission yeast cleavage and polyadenylation factor (CPF) subunit Ppn1 and its interactions with Dis2 and Swd22
title Structure-function analysis of fission yeast cleavage and polyadenylation factor (CPF) subunit Ppn1 and its interactions with Dis2 and Swd22
title_full Structure-function analysis of fission yeast cleavage and polyadenylation factor (CPF) subunit Ppn1 and its interactions with Dis2 and Swd22
title_fullStr Structure-function analysis of fission yeast cleavage and polyadenylation factor (CPF) subunit Ppn1 and its interactions with Dis2 and Swd22
title_full_unstemmed Structure-function analysis of fission yeast cleavage and polyadenylation factor (CPF) subunit Ppn1 and its interactions with Dis2 and Swd22
title_short Structure-function analysis of fission yeast cleavage and polyadenylation factor (CPF) subunit Ppn1 and its interactions with Dis2 and Swd22
title_sort structure-function analysis of fission yeast cleavage and polyadenylation factor (cpf) subunit ppn1 and its interactions with dis2 and swd22
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7990198/
https://www.ncbi.nlm.nih.gov/pubmed/33711009
http://dx.doi.org/10.1371/journal.pgen.1009452
work_keys_str_mv AT benjaminbradley structurefunctionanalysisoffissionyeastcleavageandpolyadenylationfactorcpfsubunitppn1anditsinteractionswithdis2andswd22
AT sanchezanam structurefunctionanalysisoffissionyeastcleavageandpolyadenylationfactorcpfsubunitppn1anditsinteractionswithdis2andswd22
AT gargangad structurefunctionanalysisoffissionyeastcleavageandpolyadenylationfactorcpfsubunitppn1anditsinteractionswithdis2andswd22
AT schwerbeate structurefunctionanalysisoffissionyeastcleavageandpolyadenylationfactorcpfsubunitppn1anditsinteractionswithdis2andswd22
AT shumanstewart structurefunctionanalysisoffissionyeastcleavageandpolyadenylationfactorcpfsubunitppn1anditsinteractionswithdis2andswd22