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HIV-1 Tat phosphorylation on Ser-16 residue modulates HIV-1 transcription

BACKGROUND: HIV-1 transcription activator protein Tat is phosphorylated in vitro by CDK2 and DNA-PK on Ser-16 residue and by PKR on Tat Ser-46 residue. Here we analyzed Tat phosphorylation in cultured cells and its functionality. RESULTS: Mass spectrometry analysis showed primarily Tat Ser-16 phosph...

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Autores principales: Ivanov, Andrey, Lin, Xionghao, Ammosova, Tatiana, Ilatovskiy, Andrey V., Kumari, Namita, Lassiter, Hatajai, Afangbedji, Nowah, Niu, Xiaomei, Petukhov, Michael G., Nekhai, Sergei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2018
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5966876/
https://www.ncbi.nlm.nih.gov/pubmed/29792216
http://dx.doi.org/10.1186/s12977-018-0422-5
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author Ivanov, Andrey
Lin, Xionghao
Ammosova, Tatiana
Ilatovskiy, Andrey V.
Kumari, Namita
Lassiter, Hatajai
Afangbedji, Nowah
Niu, Xiaomei
Petukhov, Michael G.
Nekhai, Sergei
author_facet Ivanov, Andrey
Lin, Xionghao
Ammosova, Tatiana
Ilatovskiy, Andrey V.
Kumari, Namita
Lassiter, Hatajai
Afangbedji, Nowah
Niu, Xiaomei
Petukhov, Michael G.
Nekhai, Sergei
author_sort Ivanov, Andrey
collection PubMed
description BACKGROUND: HIV-1 transcription activator protein Tat is phosphorylated in vitro by CDK2 and DNA-PK on Ser-16 residue and by PKR on Tat Ser-46 residue. Here we analyzed Tat phosphorylation in cultured cells and its functionality. RESULTS: Mass spectrometry analysis showed primarily Tat Ser-16 phosphorylation in cultured cells. In vitro, CDK2/cyclin E predominantly phosphorylated Tat Ser-16 and PKR—Tat Ser-46. Alanine mutations of either Ser-16 or Ser-46 decreased overall Tat phosphorylation. Phosphorylation of Tat Ser-16 was reduced in cultured cells treated by a small molecule inhibitor of CDK2 and, to a lesser extent, an inhibitor of DNA-PK. Conditional knock-downs of CDK2 and PKR inhibited and induced one round HIV-1 replication respectively. HIV-1 proviral transcription was inhibited by Tat alanine mutants and partially restored by S16E mutation. Pseudotyped HIV-1 with Tat S16E mutation replicated well, and HIV-1 Tat S46E—poorly, but no live viruses were obtained with Tat S16A or Tat S46A mutations. TAR RNA binding was affected by Tat Ser-16 alanine mutation. Binding to cyclin T1 showed decreased binding of all Ser-16 and Ser-46 Tat mutants with S16D and Tat S46D mutationts showing the strongest effect. Molecular modelling and molecular dynamic analysis revealed significant structural changes in Tat/CDK9/cyclin T1 complex with phosphorylated Ser-16 residue, but not with phosphorylated Ser-46 residue. CONCLUSION: Phosphorylation of Tat Ser-16 induces HIV-1 transcription, facilitates binding to TAR RNA and rearranges CDK9/cyclin T1/Tat complex. Thus, phosphorylation of Tat Ser-16 regulates HIV-1 transcription and may serve as target for HIV-1 therapeutics.
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spelling pubmed-59668762018-05-24 HIV-1 Tat phosphorylation on Ser-16 residue modulates HIV-1 transcription Ivanov, Andrey Lin, Xionghao Ammosova, Tatiana Ilatovskiy, Andrey V. Kumari, Namita Lassiter, Hatajai Afangbedji, Nowah Niu, Xiaomei Petukhov, Michael G. Nekhai, Sergei Retrovirology Research BACKGROUND: HIV-1 transcription activator protein Tat is phosphorylated in vitro by CDK2 and DNA-PK on Ser-16 residue and by PKR on Tat Ser-46 residue. Here we analyzed Tat phosphorylation in cultured cells and its functionality. RESULTS: Mass spectrometry analysis showed primarily Tat Ser-16 phosphorylation in cultured cells. In vitro, CDK2/cyclin E predominantly phosphorylated Tat Ser-16 and PKR—Tat Ser-46. Alanine mutations of either Ser-16 or Ser-46 decreased overall Tat phosphorylation. Phosphorylation of Tat Ser-16 was reduced in cultured cells treated by a small molecule inhibitor of CDK2 and, to a lesser extent, an inhibitor of DNA-PK. Conditional knock-downs of CDK2 and PKR inhibited and induced one round HIV-1 replication respectively. HIV-1 proviral transcription was inhibited by Tat alanine mutants and partially restored by S16E mutation. Pseudotyped HIV-1 with Tat S16E mutation replicated well, and HIV-1 Tat S46E—poorly, but no live viruses were obtained with Tat S16A or Tat S46A mutations. TAR RNA binding was affected by Tat Ser-16 alanine mutation. Binding to cyclin T1 showed decreased binding of all Ser-16 and Ser-46 Tat mutants with S16D and Tat S46D mutationts showing the strongest effect. Molecular modelling and molecular dynamic analysis revealed significant structural changes in Tat/CDK9/cyclin T1 complex with phosphorylated Ser-16 residue, but not with phosphorylated Ser-46 residue. CONCLUSION: Phosphorylation of Tat Ser-16 induces HIV-1 transcription, facilitates binding to TAR RNA and rearranges CDK9/cyclin T1/Tat complex. Thus, phosphorylation of Tat Ser-16 regulates HIV-1 transcription and may serve as target for HIV-1 therapeutics. BioMed Central 2018-05-23 /pmc/articles/PMC5966876/ /pubmed/29792216 http://dx.doi.org/10.1186/s12977-018-0422-5 Text en © The Author(s) 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Ivanov, Andrey
Lin, Xionghao
Ammosova, Tatiana
Ilatovskiy, Andrey V.
Kumari, Namita
Lassiter, Hatajai
Afangbedji, Nowah
Niu, Xiaomei
Petukhov, Michael G.
Nekhai, Sergei
HIV-1 Tat phosphorylation on Ser-16 residue modulates HIV-1 transcription
title HIV-1 Tat phosphorylation on Ser-16 residue modulates HIV-1 transcription
title_full HIV-1 Tat phosphorylation on Ser-16 residue modulates HIV-1 transcription
title_fullStr HIV-1 Tat phosphorylation on Ser-16 residue modulates HIV-1 transcription
title_full_unstemmed HIV-1 Tat phosphorylation on Ser-16 residue modulates HIV-1 transcription
title_short HIV-1 Tat phosphorylation on Ser-16 residue modulates HIV-1 transcription
title_sort hiv-1 tat phosphorylation on ser-16 residue modulates hiv-1 transcription
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5966876/
https://www.ncbi.nlm.nih.gov/pubmed/29792216
http://dx.doi.org/10.1186/s12977-018-0422-5
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