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Original Articles

Structural insights into the interactions of xpt riboswitch with novel guanine analogues: a molecular dynamics simulation study

, , , , , & show all
Pages 234-243 | Received 17 Jul 2013, Accepted 27 Nov 2013, Published online: 03 Jan 2014
 

Abstract

Ligand recognition in purine riboswitches is a complex process requiring different levels of conformational changes. Recent efforts in the area of purine riboswitch research have focused on ligand analogue binding studies. In the case of the guanine xanthine phosphoribosyl transferase (xpt) riboswitch, synthetic analogues that resemble guanine have the potential to tightly bind and subsequently influence the genetic expression of xpt mRNA in prokaryotes. We have carried out 25 ns Molecular Dynamics (MD) simulation studies of the aptamer domain of the xpt G-riboswitch in four different states: guanine riboswitch in free form, riboswitch bound with its cognate ligand guanine, and with two guanine analogues SJ1 and SJ2. Our work reveals novel interactions of SJ1 and SJ2 ligands with the binding core residues of the riboswitch. The ligands proposed in this work bind to the riboswitch with greater overall stability and lower root mean square deviations and fluctuations compared to guanine ligand. Reporter gene assay data demonstrate that the ligand analogues, upon binding to the RNA, lower the genetic expression of the guanine riboswitch. Our work has important implications for future ligand design and binding studies in the exciting field of riboswitches.

Funding

This work is supported by a Research Corporation grant # 21054 to SSJ, Dreyfus Corporation, and generous support from The Bard Summer Research Institute. Authors acknowledge Bioinformatics Resources and Applications Facility (BRAF) and National Param Supercomputing Facility (NPSF) of C-DAC for providing the necessary resources to carry out the molecular dynamics simulations.

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