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Dive into the research topics where Raveendra I. Mathad is active.

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Featured researches published by Raveendra I. Mathad.


Chemistry: A European Journal | 2009

Interpreting Experimental Data by Using Molecular Simulation Instead of Model Building

Zrinka Gattin; Julian Schwartz; Raveendra I. Mathad; Bernhard Jaun; Wilfred F. van Gunsteren

A proper description of the conformational equilibrium of polypeptides or proteins is essential for a correct description of their function. The conformational ensembles from 16 molecular dynamic simulations of two beta- heptapeptides were used to interpret the primary NMR data, which were also compared to a set of NMR model structures (see graphic).One of the most used spectroscopic techniques for resolving the structure of a biomolecule, such as a protein or peptide, is NMR spectroscopy. Because only NMR signal intensities and frequencies are measured in the experiment, a conformational interpretation of the primary data, that is, measured data, is not straightforward, especially for flexible molecules. It is hampered by the occurrence of conformational and/or time-averaging, by insufficient number of experimental data and by insufficient accuracy of experimental data. All three problematic aspects of structure refinement based on NMR nuclear Overhauser effect (NOE) intensities and (3)J coupling data are illustrated by using two beta-heptapeptides in methanol as an example. We have performed 16 molecular dynamics (MD) simulations between 20 to 100 ns in length of unrestrained and NOE distance-restrained cases (instantaneous and time-averaged) of two beta-heptapeptides with a central beta-HAla(alpha-OH) amino acid in methanol at two different temperatures using two different GROMOS force-field parameter sets, 45 A3 and 53 A6. The created conformational ensembles were used to interpret the primary NMR data on these molecules. They also were compared to a set of NMR model structures derived by single-structure refinement in vacuo by using standard techniques. It is shown that the conformational interpretation of measured experimental data can be significantly improved by using unrestrained, instantaneous and time-averaged restrained MD simulations of the peptides by using a thermodynamically calibrated force field and by explicitly including solvent degrees of freedom.


Helvetica Chimica Acta | 2006

Synthesis, and Helix or Hairpin‐Turn Secondary Structures of ‘Mixed’ α/β‐Peptides Consisting of Residues with Proteinogenic Side Chains and of 2‐Amino‐2‐methylpropanoic Acid (Aib)

Dieter Seebach; Bernhard Jaun; Radovan Sebesta; Raveendra I. Mathad; Oliver Flögel; Michael Limbach; Holger Sellner; Sylvain Cottens


Helvetica Chimica Acta | 2007

NMR-Solution Structures of Fluoro-Substituted β-Peptides: A 314-Helix and a Hairpin Turn. The First Case of a 90° OCCF Dihedral Angle in an α-Fluoro-Amide Group

Raveendra I. Mathad; Bernhard Jaun; Oliver Flögel; James Gardiner; Markus Löweneck; Jeroen D. C. Codée; Peter H. Seeberger; Dieter Seebach; Michael K. Edmonds; Florian H. M. Graichen; Andrew D. Abell


Helvetica Chimica Acta | 2005

The Effect of Backbone‐Heteroatom Substitution on the Folding of Peptides – A Single Fluorine Substituent Prevents a β‐Heptapeptide from Folding into a 314‐Helix (NMR Analysis)

Raveendra I. Mathad; François Gessier; Dieter Seebach; Bernhard Jaun


Helvetica Chimica Acta | 2008

New Open‐Chain and Cyclic Tetrapeptides, Consisting of α‐, β2‐, and β3‐Amino‐Acid Residues, as Somatostatin Mimics – A Survey

Dieter Seebach; Estelle Dubost; Raveendra I. Mathad; Bernhard Jaun; Michael Limbach; Markus Löweneck; Oliver Flögel; James Gardiner; Stefania Capone; Albert K. Beck; Hans Widmer; Daniel Langenegger; Dominique Monna; Daniel Hoyer


Helvetica Chimica Acta | 2006

β-Peptidic Secondary Structures Fortified and Enforced by Zn2+ Complexation – On the Way to β-Peptidic Zinc Fingers?

Gérald Lelais; Dieter Seebach; Bernhard Jaun; Raveendra I. Mathad; Oliver Flögel; Francesco Rossi; Marino A. Campo; Arno Wortmann


Helvetica Chimica Acta | 2005

NMR-Solution Structures in Methanol of an α-Heptapeptide, of a β3/β2-Nonapeptide, and of an all-β3-Icosapeptide Carrying the 20 Proteinogenic Side Chains

Dieter Seebach; Raveendra I. Mathad; Thierry Kimmerlin; Yogesh R. Mahajan; Pascal Bindschädler; Magnus Rueping; Bernhard Jaun; Christian Hilty; Touraj Etezady-Esfarjani


Chemistry: A European Journal | 2005

On the Influence of Charged Side Chains on the Folding–Unfolding Equilibrium of β‐Peptides: A Molecular Dynamics Simulation Study

Alice Glättli; Xavier Daura; Pascal Bindschädler; Bernhard Jaun; Yogesh R. Mahajan; Raveendra I. Mathad; Magnus Rueping; Dieter Seebach; Wilfred F. van Gunsteren


Chemistry & Biodiversity | 2006

Comparison of Permeation through Phosphatidylcholine Bilayers of N‐Dipicolinyl‐α‐ and ‐β‐Oligopeptides

James Gardiner; Anita V. Thomae; Raveendra I. Mathad; Dieter Seebach; Stefanie D. Krämer


Helvetica Chimica Acta | 2009

β-Peptide Conjugates: Syntheses and CD and NMR Investigations of β/α-Chimeric Peptides, of a DPA-β-Decapeptide, and of a PEGylated β-Heptapeptide

James Gardiner; Raveendra I. Mathad; Berhard Jaun; Jiirg V. Schreiber; Oliver Flögel; Dieter Seebach

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James Gardiner

Commonwealth Scientific and Industrial Research Organisation

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Wilfred F. van Gunsteren

École Polytechnique Fédérale de Lausanne

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