Inactive to active transition of human Thymidine Kinase 1 revealed by Molecular Dynamics simulations
Authors/Creators
- 1. Faculty of Chemistry University of Gdańsk, Wita Stwosza 63, 80-308 Gdańsk, Poland
- 2. Biomedical Research Foundation, Academy of Athens, 4 Soranou Ephessiou, 11527 Athens, Greece
Description
The trajectories and input files for the manuscript Inactive to active transition of human Thymidine
Kinase 1 revealed by Molecular Dynamics simulations (https://doi.org/10.1021/acs.jcim.1c01157)
ABSTRACT
Despite its importance for the nucleoside (and nucleoside prodrug) metabolism, the structure
of the active conformation of human Thymidine Kinase 1 (hTK1) remains elusive. We perform
microsecond molecular dynamics simulations of the inactive enzyme form bound to a
bisubstrate inhibitor that was shown experimentally to activate another TK1-like kinase,
Thermotoga maritima TK (TmTK). Our results are in excellent agreement with the
experimental findings for the TmTK closed-to-open state transition. We show that the inhibitor
induces an increase of the enzyme radius of gyration due to the expansion on one of the dimer
interfaces; the structural changes observed, including the active site pocket volume increase,
decrease in monomer-monomer buried surface area and of the number of hydrogen bonds (as
compared to the inactive enzyme control simulation), show that the catalytically competent
(open) conformation of hTK1 can be assumed in the presence of an activating ligand.
Notes
Files
Files
(10.5 GB)
| Name | Size | |
|---|---|---|
|
md5:71210a840a7e3136fc0163c8ffabd06f
|
2.0 MB | Download |
|
md5:80c33ccee18c472fb964e7730d523e83
|
2.6 MB | Download |
|
md5:dd5a9aa8213b306e27f18ec74edf7edf
|
13.5 MB | Download |
|
md5:5193fb73abbf38e90c5b1e0e395e8265
|
14.0 MB | Download |
|
md5:6fe24070fb3ff9eae61696ee07075579
|
10.3 MB | Download |
|
md5:ff0759ea8c255d31d56c13bdb545ec6d
|
14.4 MB | Download |
|
md5:6949f64517adcdee5c959e73abca1e07
|
2.5 MB | Download |
|
md5:4ef96986d50a78a922ad580c6d26b3f6
|
2.4 MB | Download |
|
md5:5671a9b0fc9633fdca5d42da89ffe829
|
1.1 GB | Download |
|
md5:b876cbf6b22c8c09e3dc23ee5b0da9c6
|
1.1 GB | Download |
|
md5:0725b001a2eb7b3e65866ace026d849c
|
1.1 GB | Download |
|
md5:c1a7b11fd583f3ea4ea445140c84a104
|
800.3 MB | Download |
|
md5:93cebe3047dd03276b3b18dacdd9c1fe
|
824.1 MB | Download |
|
md5:e38572f3a07746f1b5869ecd4aab0149
|
824.1 MB | Download |
|
md5:eb331ccb1e9a911baae4e15608120b43
|
663.4 MB | Download |
|
md5:7b0a6122a9d953b90c33a86a8435d88c
|
683.1 MB | Download |
|
md5:754143378782598a06eda7f4a6ef2504
|
683.1 MB | Download |
|
md5:27bbc4ba7c110132e90ffabb38b685c0
|
854.8 MB | Download |
|
md5:69ff4cd6015ad04e810453bb00c0db4d
|
880.2 MB | Download |
|
md5:98362c18695f92c462914f1a12fc7ea9
|
880.2 MB | Download |
Additional details
Related works
- Is supplement to
- Journal article: 10.1021/acs.jcim.1c01157 (DOI)