paper-with-me

홈 › Papers

Unravelling Mg$^{2+}$-RNA binding with atomistic molecular dynamics

2016-12-27

Interaction with divalent cations is of paramount importance for RNA structural stability and function. We here report a detailed molecular dynamics study of all the possible binding sites for Mg$^{2+}$ on a RNA duplex, including both direct (inner sphere) and indirect (outer sphere) binding. In order to tackle sampling issues, we develop a modified version of bias-exchange metadynamics which allows us to simultaneously compute affinities with previously unreported statistical accuracy. Results correctly reproduce trends observed in crystallographic databases. Based on this, we simulate a carefully chosen set of models that allows us to quantify the effects of competition with monovalent cations, RNA flexibility, and RNA hybridization. Our simulations reproduce the decrease and increase of Mg$^{2+}$ affinity due to ion competition and hybridization respectively, and predict that RNA flexibility has a site dependent effect. This suggests a non trivial interplay between RNA conformational entropy and divalent cation binding.

📄 PDF Abstract BibTeX arXiv:1612.08550

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Molecular dynamics simulations with grand-canonical reweighting suggest cooperativity effects in RNA structure probing experiments

2022-09-26 · Nicola Calonaci, Mattia Bernetti, Alisha Jones, Michael Sattler 외

Chemical probing experiments such as SHAPE are routinely used to probe RNA molecules. In this work, we use atomistic molecular dynamics simulations to test the hypothesis that binding of RNA with SHAPE reagents is affect…

Binding-and-folding recognition of an intrinsically disordered protein using online learning molecular dynamics

2023-02-20 · Pablo Herrera-Nieto, Adrià Pérez, Gianni de Fabritiis

Intrinsically disordered proteins participate in many biological processes by folding upon binding with other proteins. However, coupled folding and binding processes are not well understood from an atomistic point of vi…

MDForge: Agentic Molecular Dynamics Pipeline Design under Sparse Simulator Feedback

2026-06-11 · Zehong Wang, Yijun Ma, Connor R. Schmidt, Tianyi Ma 외 arxiv

Molecular dynamics (MD) is the canonical in-silico method for atomistic molecular science, simulating molecular behavior from first-principle physics. Designing an MD pipeline for a new system requires substantial expert…

Code Generation

ATP dependent NS3 helicase interaction with RNA: insights from molecular simulations

2015-08-21

Non structural protein 3 (NS3) helicase from hepatitis C virus is an enzyme that unwinds and translocates along nucleic acids with an ATP-dependent mechanism and has a key role in the replication of the viral RNA. An inc…

Protein-Ligand Complex Generator & Drug Screening via Tiered Tensor Transform

2023-01-03 · Jonathan P. Mailoa, Zhaofeng Ye, Jiezhong Qiu, Chang-Yu Hsieh 외

The generation of small molecule candidate (ligand) binding poses in its target protein pocket is important for computer-aided drug discovery. Typical rigid-body docking methods ignore the pocket flexibility of protein, …

Drug Discovery