Unfolding mechanism of thrombin-binding aptamer revealed by molecular dynamics simulation and Markov State Model.
Ontology highlight
ABSTRACT: Thrombin-binding aptamer (TBA) with the sequence 5'GGTTGGTGTGGTTGG3' could fold into G-quadruplex, which correlates with functionally important genomic regionsis. However, unfolding mechanism involved in the structural stability of G-quadruplex has not been satisfactorily elucidated on experiments so far. Herein, we studied the unfolding pathway of TBA by a combination of molecular dynamics simulation (MD) and Markov State Model (MSM). Our results revealed that the unfolding of TBA is not a simple two-state process but proceeds along multiple pathways with multistate intermediates. One high flux confirms some observations from NMR experiment. Another high flux exhibits a different and simpler unfolding pathway with less intermediates. Two important intermediate states were identified. One
SUBMITTER: Zeng X
PROVIDER: S-EPMC4820715 | biostudies-literature | 2016 Apr
REPOSITORIES: biostudies-literature
ACCESS DATA