Determining the Functions of HIV-1 Tat and a Second Magnesium Ion in the CDK9/Cyclin T1 Complex: A Molecular Dynamics Simulation Study.

The current paradigm of cyclin-dependent kinase (CDK) regulation based on the well-established CDK2 has been recently expanded. The determination of CDK9 crystal structures suggests the requirement of an additional regulatory protein, such as human immunodeficiency virus type 1 (HIV-1) Tat, to exert...

Full description

Bibliographic Details
Main Authors: Hai-Xiao Jin, Mei-Lin Go, Peng Yin, Xiao-Ting Qiu, Peng Zhu, Xiao-Jun Yan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4409394?pdf=render
_version_ 1819131633477877760
author Hai-Xiao Jin
Mei-Lin Go
Peng Yin
Xiao-Ting Qiu
Peng Zhu
Xiao-Jun Yan
author_facet Hai-Xiao Jin
Mei-Lin Go
Peng Yin
Xiao-Ting Qiu
Peng Zhu
Xiao-Jun Yan
author_sort Hai-Xiao Jin
collection DOAJ
description The current paradigm of cyclin-dependent kinase (CDK) regulation based on the well-established CDK2 has been recently expanded. The determination of CDK9 crystal structures suggests the requirement of an additional regulatory protein, such as human immunodeficiency virus type 1 (HIV-1) Tat, to exert its physiological functions. In most kinases, the exact number and roles of the cofactor metal ions remain unappreciated, and the repertoire has thus gained increasing attention recently. Here, molecular dynamics (MD) simulations were implemented on CDK9 to explore the functional roles of HIV-1 Tat and the second Mg2+ ion at site 1 (Mg12+). The simulations unveiled that binding of HIV-1 Tat to CDK9 not only stabilized hydrogen bonds (H-bonds) between ATP and hinge residues Asp104 and Cys106, as well as between ATP and invariant Lys48, but also facilitated the salt bridge network pertaining to the phosphorylated Thr186 at the activation loop. By contrast, these H-bonds cannot be formed in CDK9 owing to the absence of HIV-1 Tat. MD simulations further revealed that the Mg12+ ion, coupled with the Mg22+ ion, anchored to the triphosphate moiety of ATP in its catalytic competent conformation. This observation indicates the requirement of the Mg12+ ion for CDK9 to realize its function. Overall, the introduction of HIV-1 Tat and Mg12+ ion resulted in the active site architectural characteristics of phosphorylated CDK9. These data highlighted the functional roles of HIV-1 Tat and Mg12+ ion in the regulation of CDK9 activity, which contributes an important complementary understanding of CDK molecular underpinnings.
first_indexed 2024-12-22T09:18:36Z
format Article
id doaj.art-6c2b804e3ae14c5d993ef1a0579aea15
institution Directory Open Access Journal
issn 1932-6203
language English
last_indexed 2024-12-22T09:18:36Z
publishDate 2015-01-01
publisher Public Library of Science (PLoS)
record_format Article
series PLoS ONE
spelling doaj.art-6c2b804e3ae14c5d993ef1a0579aea152022-12-21T18:31:16ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01104e012467310.1371/journal.pone.0124673Determining the Functions of HIV-1 Tat and a Second Magnesium Ion in the CDK9/Cyclin T1 Complex: A Molecular Dynamics Simulation Study.Hai-Xiao JinMei-Lin GoPeng YinXiao-Ting QiuPeng ZhuXiao-Jun YanThe current paradigm of cyclin-dependent kinase (CDK) regulation based on the well-established CDK2 has been recently expanded. The determination of CDK9 crystal structures suggests the requirement of an additional regulatory protein, such as human immunodeficiency virus type 1 (HIV-1) Tat, to exert its physiological functions. In most kinases, the exact number and roles of the cofactor metal ions remain unappreciated, and the repertoire has thus gained increasing attention recently. Here, molecular dynamics (MD) simulations were implemented on CDK9 to explore the functional roles of HIV-1 Tat and the second Mg2+ ion at site 1 (Mg12+). The simulations unveiled that binding of HIV-1 Tat to CDK9 not only stabilized hydrogen bonds (H-bonds) between ATP and hinge residues Asp104 and Cys106, as well as between ATP and invariant Lys48, but also facilitated the salt bridge network pertaining to the phosphorylated Thr186 at the activation loop. By contrast, these H-bonds cannot be formed in CDK9 owing to the absence of HIV-1 Tat. MD simulations further revealed that the Mg12+ ion, coupled with the Mg22+ ion, anchored to the triphosphate moiety of ATP in its catalytic competent conformation. This observation indicates the requirement of the Mg12+ ion for CDK9 to realize its function. Overall, the introduction of HIV-1 Tat and Mg12+ ion resulted in the active site architectural characteristics of phosphorylated CDK9. These data highlighted the functional roles of HIV-1 Tat and Mg12+ ion in the regulation of CDK9 activity, which contributes an important complementary understanding of CDK molecular underpinnings.http://europepmc.org/articles/PMC4409394?pdf=render
spellingShingle Hai-Xiao Jin
Mei-Lin Go
Peng Yin
Xiao-Ting Qiu
Peng Zhu
Xiao-Jun Yan
Determining the Functions of HIV-1 Tat and a Second Magnesium Ion in the CDK9/Cyclin T1 Complex: A Molecular Dynamics Simulation Study.
PLoS ONE
title Determining the Functions of HIV-1 Tat and a Second Magnesium Ion in the CDK9/Cyclin T1 Complex: A Molecular Dynamics Simulation Study.
title_full Determining the Functions of HIV-1 Tat and a Second Magnesium Ion in the CDK9/Cyclin T1 Complex: A Molecular Dynamics Simulation Study.
title_fullStr Determining the Functions of HIV-1 Tat and a Second Magnesium Ion in the CDK9/Cyclin T1 Complex: A Molecular Dynamics Simulation Study.
title_full_unstemmed Determining the Functions of HIV-1 Tat and a Second Magnesium Ion in the CDK9/Cyclin T1 Complex: A Molecular Dynamics Simulation Study.
title_short Determining the Functions of HIV-1 Tat and a Second Magnesium Ion in the CDK9/Cyclin T1 Complex: A Molecular Dynamics Simulation Study.
title_sort determining the functions of hiv 1 tat and a second magnesium ion in the cdk9 cyclin t1 complex a molecular dynamics simulation study
url http://europepmc.org/articles/PMC4409394?pdf=render
work_keys_str_mv AT haixiaojin determiningthefunctionsofhiv1tatandasecondmagnesiumioninthecdk9cyclint1complexamoleculardynamicssimulationstudy
AT meilingo determiningthefunctionsofhiv1tatandasecondmagnesiumioninthecdk9cyclint1complexamoleculardynamicssimulationstudy
AT pengyin determiningthefunctionsofhiv1tatandasecondmagnesiumioninthecdk9cyclint1complexamoleculardynamicssimulationstudy
AT xiaotingqiu determiningthefunctionsofhiv1tatandasecondmagnesiumioninthecdk9cyclint1complexamoleculardynamicssimulationstudy
AT pengzhu determiningthefunctionsofhiv1tatandasecondmagnesiumioninthecdk9cyclint1complexamoleculardynamicssimulationstudy
AT xiaojunyan determiningthefunctionsofhiv1tatandasecondmagnesiumioninthecdk9cyclint1complexamoleculardynamicssimulationstudy