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Dive into the research topics where Martin Kamlar is active.

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Featured researches published by Martin Kamlar.


ACS Chemical Biology | 2013

Modulation of aldose reductase inhibition by halogen bond tuning.

Jindřich Fanfrlík; Michal Kolář; Martin Kamlar; David Hurný; Francesc X. Ruiz; Alexandra Cousido-Siah; Andre Mitschler; Jan Řezáč; Elango Munusamy; Martin Lepšík; Pavel Matějíček; Jan Veselý; Alberto Podjarny; Pavel Hobza

In this paper, we studied a designed series of aldose reductase (AR) inhibitors. The series was derived from a known AR binder, which had previously been shown to form a halogen bond between its bromine atom and the oxygen atom of the Thr-113 side chain of AR. In the series, the strength of the halogen bond was modulated by two factors, namely bromine-iodine substitution and the fluorination of the aromatic ring in several positions. The role of the single halogen bond in AR-ligand binding was elucidated by advanced binding free energy calculations involving the semiempirical quantum chemical Hamiltonian. The results were complemented with ultrahigh-resolution X-ray crystallography and IC50 measurements. All of the AR inhibitors studied were shown by X-ray crystallography to bind in an identical manner. Further, it was demonstrated that it was possible to decrease the IC50 value by about 1 order of magnitude by tuning the strength of the halogen bond by a monoatomic substitution. The calculations revealed that the protein-ligand interaction energy increased upon the substitution of iodine for bromine or upon the addition of electron-withdrawing fluorine atoms to the ring. However, the effect on the binding affinity was found to be more complex due to the change of the solvation/desolvation properties within the ligand series. The study shows that it is possible to modulate the strength of a halogen bond in a protein-ligand complex as was designed based on the previous studies of low-molecular-weight complexes.


Organic and Biomolecular Chemistry | 2014

Organocatalytic enantioselective allylic alkylation of MBH carbonates with β-keto esters

Martin Kamlar; Simona Hybelbauerová; Ivana Císařová; Jan Veselý

The highly stereoselective allylic alkylation of Morita-Baylis-Hillman carbonates with β-ketoesters catalysed by β-ICD is described. The corresponding products containing two adjacent quaternary and tertiary carbon centers were obtained in good yields with high diastereoselectivity (up to 10 : 1 dr) and enantioselectivity (up to 95% ee).


Tetrahedron Letters | 2009

Highly enantioselective fluoromalonate addition to α,β-unsaturated aldehydes

Xavier Companyó; Monika Hejnova; Martin Kamlar; Jan Vesely; Albert Moyano; Ramon Rios


European Journal of Organic Chemistry | 2010

Highly Enantioselective Addition of 1-Fluoro-1-nitro(phenylsulfonyl)methane to α,β-Unsaturated Aldehydes

Martin Kamlar; Natalia Bravo; Andrea-Nekane R. Alba; Simona Hybelbauerová; Ivana Císařová; Jan Veselý; Albert Moyano; Ramon Rios


Tetrahedron Letters | 2013

Organocatalytic alkynylation of densely functionalized monofluorinated derivatives: C(sp3)–C(sp) coupling

Martin Kamlar; Piotr Putaj; Jan Veselý


Organic and Biomolecular Chemistry | 2015

Alkynylation of heterocyclic compounds using hypervalent iodine reagent

Martin Kamlar; Ivana Císařová; Jan Veselý


ACS Chemical Biology | 2016

IDD388 Polyhalogenated Derivatives as Probes for an Improved Structure-Based Selectivity of AKR1B10 Inhibitors

Alexandra Cousido-Siah; Francesc X. Ruiz; Jindřich Fanfrlík; Joan Giménez-Dejoz; Andre Mitschler; Martin Kamlar; Jan Veselý; Haresh Ajani; Xavier Parés; Jaume Farrés; Pavel Hobza; Alberto Podjarny


Tetrahedron-asymmetry | 2013

Highly enantioselective organocatalytic α-selenylation of aldehydes using hypervalent iodine compounds

Martin Kamlar; Jan Veselý


European Journal of Organic Chemistry | 2017

Asymmetric Allylic Amination of Morita–Baylis–Hillman Carbonates with Silylated tert-Butylhydroxycarbamate Derivatives

Martin Kamlar; Ivana Císařová; Simona Hybelbauerová; Jan Veselý


ChemInform | 2012

Diastereoselective Pauson‐Khand Reaction using Chiral Pool Techniques (Chiral Substrates)

Martin Kamlar; Jan Vesely; Ramon Rios Torres

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Jan Veselý

Charles University in Prague

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Ivana Císařová

Charles University in Prague

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Ramon Rios

University of Southampton

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Bedřich Formánek

Charles University in Prague

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Jindřich Fanfrlík

Academy of Sciences of the Czech Republic

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Monika Hejnova

Charles University in Prague

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Pavel Hobza

Academy of Sciences of the Czech Republic

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