Structural and Functional Analysis of the Cdk13/Cyclin K Complex
Cyclin-dependent kinases regulate the cell cycle and transcription in higher eukaryotes. We have determined the crystal structure of the transcription kinase Cdk13 and its Cyclin K subunit at 2.0 Å resolution. Cdk13 contains a C-terminal extension helix composed of a polybasic cluster and a DCHEL mo...
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doaj-984de06051944e5bbbc7626303e3bfbc2020-11-24T21:34:06ZengElsevierCell Reports2211-12472016-01-0114232033110.1016/j.celrep.2015.12.025Structural and Functional Analysis of the Cdk13/Cyclin K ComplexAnn Katrin Greifenberg0Dana Hönig1Kveta Pilarova2Robert Düster3Koen Bartholomeeusen4Christian A. Bösken5Kanchan Anand6Dalibor Blazek7Matthias Geyer8Institute of Innate Immunity, Department of Structural Immunology, University of Bonn, Sigmund-Freud-Strasse 25, 53127 Bonn, GermanyCenter of Advanced European Studies and Research, Group Physical Biochemistry, Ludwig-Erhard-Allee 2, 53175 Bonn, GermanyCentral European Institute of Technology (CEITEC), Masaryk University, 62500 Brno, Czech RepublicInstitute of Innate Immunity, Department of Structural Immunology, University of Bonn, Sigmund-Freud-Strasse 25, 53127 Bonn, GermanyCentral European Institute of Technology (CEITEC), Masaryk University, 62500 Brno, Czech RepublicCenter of Advanced European Studies and Research, Group Physical Biochemistry, Ludwig-Erhard-Allee 2, 53175 Bonn, GermanyInstitute of Innate Immunity, Department of Structural Immunology, University of Bonn, Sigmund-Freud-Strasse 25, 53127 Bonn, GermanyCentral European Institute of Technology (CEITEC), Masaryk University, 62500 Brno, Czech RepublicInstitute of Innate Immunity, Department of Structural Immunology, University of Bonn, Sigmund-Freud-Strasse 25, 53127 Bonn, GermanyCyclin-dependent kinases regulate the cell cycle and transcription in higher eukaryotes. We have determined the crystal structure of the transcription kinase Cdk13 and its Cyclin K subunit at 2.0 Å resolution. Cdk13 contains a C-terminal extension helix composed of a polybasic cluster and a DCHEL motif that interacts with the bound ATP. Cdk13/CycK phosphorylates both Ser5 and Ser2 of the RNA polymerase II C-terminal domain (CTD) with a preference for Ser7 pre-phosphorylations at a C-terminal position. The peptidyl-prolyl isomerase Pin1 does not change the phosphorylation specificities of Cdk9, Cdk12, and Cdk13 but interacts with the phosphorylated CTD through its WW domain. Using recombinant proteins, we find that flavopiridol inhibits Cdk7 more potently than it does Cdk13. Gene expression changes after knockdown of Cdk13 or Cdk12 are markedly different, with enrichment of growth signaling pathways for Cdk13-dependent genes. Together, our results provide insights into the structure, function, and activity of human Cdk13/CycK.http://www.sciencedirect.com/science/article/pii/S2211124715014382transcriptionCdk13Cyclin KPin1RNA polymerase IIflavopiridolIntroduction |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ann Katrin Greifenberg Dana Hönig Kveta Pilarova Robert Düster Koen Bartholomeeusen Christian A. Bösken Kanchan Anand Dalibor Blazek Matthias Geyer |
spellingShingle |
Ann Katrin Greifenberg Dana Hönig Kveta Pilarova Robert Düster Koen Bartholomeeusen Christian A. Bösken Kanchan Anand Dalibor Blazek Matthias Geyer Structural and Functional Analysis of the Cdk13/Cyclin K Complex Cell Reports transcription Cdk13 Cyclin K Pin1 RNA polymerase II flavopiridolIntroduction |
author_facet |
Ann Katrin Greifenberg Dana Hönig Kveta Pilarova Robert Düster Koen Bartholomeeusen Christian A. Bösken Kanchan Anand Dalibor Blazek Matthias Geyer |
author_sort |
Ann Katrin Greifenberg |
title |
Structural and Functional Analysis of the Cdk13/Cyclin K Complex |
title_short |
Structural and Functional Analysis of the Cdk13/Cyclin K Complex |
title_full |
Structural and Functional Analysis of the Cdk13/Cyclin K Complex |
title_fullStr |
Structural and Functional Analysis of the Cdk13/Cyclin K Complex |
title_full_unstemmed |
Structural and Functional Analysis of the Cdk13/Cyclin K Complex |
title_sort |
structural and functional analysis of the cdk13/cyclin k complex |
publisher |
Elsevier |
series |
Cell Reports |
issn |
2211-1247 |
publishDate |
2016-01-01 |
description |
Cyclin-dependent kinases regulate the cell cycle and transcription in higher eukaryotes. We have determined the crystal structure of the transcription kinase Cdk13 and its Cyclin K subunit at 2.0 Å resolution. Cdk13 contains a C-terminal extension helix composed of a polybasic cluster and a DCHEL motif that interacts with the bound ATP. Cdk13/CycK phosphorylates both Ser5 and Ser2 of the RNA polymerase II C-terminal domain (CTD) with a preference for Ser7 pre-phosphorylations at a C-terminal position. The peptidyl-prolyl isomerase Pin1 does not change the phosphorylation specificities of Cdk9, Cdk12, and Cdk13 but interacts with the phosphorylated CTD through its WW domain. Using recombinant proteins, we find that flavopiridol inhibits Cdk7 more potently than it does Cdk13. Gene expression changes after knockdown of Cdk13 or Cdk12 are markedly different, with enrichment of growth signaling pathways for Cdk13-dependent genes. Together, our results provide insights into the structure, function, and activity of human Cdk13/CycK. |
topic |
transcription Cdk13 Cyclin K Pin1 RNA polymerase II flavopiridolIntroduction |
url |
http://www.sciencedirect.com/science/article/pii/S2211124715014382 |
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