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Featured researches published by Ewa Ciepichal.


Glycobiology | 2012

The C-terminal domain of the Salmonella enterica WbaP (UDP-galactose:Und-P galactose-1-phosphate transferase) is sufficient for catalytic activity and specificity for undecaprenyl monophosphate

Kinnari B. Patel; Ewa Ciepichal; Ewa Swiezewska; Miguel A. Valvano

Two families of membrane enzymes catalyze the initiation of the synthesis of O-antigen lipopolysaccharide. The Salmonella enterica Typhimurium WbaP is a prototypic member of one of these families. We report here the purification and biochemical characterization of the WbaP C-terminal (WbaP(CT)) domain harboring one putative transmembrane helix and a large cytoplasmic tail. An N-terminal thioredoxin fusion greatly improved solubility and stability of WbaP(CT) allowing us to obtain highly purified protein. We demonstrate that WbaP(CT) is sufficient to catalyze the in vitro transfer of galactose (Gal)-1-phosphate from uridine monophosphate (UDP)-Gal to the lipid carrier undecaprenyl monophosphate (Und-P). We optimized the in vitro assay to determine steady-state kinetic parameters with the substrates UDP-Gal and Und-P. Using various purified polyisoprenyl phosphates of increasing length and variable saturation of the isoprene units, we also demonstrate that the purified enzyme functions highly efficiently with Und-P, suggesting that the WbaP(CT) domain contains all the essential motifs to catalyze the synthesis of the Und-P-P-Gal molecule that primes the biosynthesis of bacterial surface glycans.


Magnetic Resonance in Chemistry | 2009

Complete 1H and 13C signal assignment of prenol‐10 with 3D NMR spectroscopy

Maria Misiak; Wiktor Koźmiński; Maria Kwasiborska; Jacek Wójcik; Ewa Ciepichal; Ewa Swiezewska

The complete assignment of 1H and 13C chemical shifts of natural abundance prenol‐10 is reported for the first time. It was achieved using 3D NMR experiments, which were based on random sampling of the evolution time space followed by multidimensional Fourier transform. This approach makes it possible to acquire 3D NMR spectra in a reasonable time and preserves high resolution in indirectly detected dimensions. It is shown that the interpretation of 3D COSY–HMBC and 3D TOCSY–HSQC spectra is crucial in the structural analysis of prenol‐10. Copyright


Biochemistry | 2007

Polyisoprenol Specificity in the Campylobacter Jejuni N-linked Glycosylation Pathway

Mark M. Chen; Eranthie Weerapana; Ewa Ciepichal; Jacek Stupak; Christopher W. Reid; Ewa Swiezewska; Barbara Imperiali


Chemistry and Physics of Lipids | 2011

Configuration of polyisoprenoids affects the permeability and thermotropic properties of phospholipid/polyisoprenoid model membranes

Ewa Ciepichal; Małgorzata Jemioła-Rzemińska; Jozefina Hertel; Ewa Swiezewska; Kazimierz Strzałka


Chemistry and Physics of Lipids | 2007

Alloprenols: novel α-trans-polyprenols of Allophylus caudatus

Ewa Ciepichal; Jacek Wójcik; Tomasz Bieńkowski; Magdalena Kania; Malgorzata Swist; Witold Danikiewicz; Andrzej Marczewski; Jozefina Hertel; Zdzislaw Matysiak; Ewa Swiezewska; Tadeusz Chojnacki


Acta Biochimica Polonica | 2007

New cationic polyprenyl derivative proposed as a lipofecting agent.

Zbigniew Madeja; Monika Rak; Ewa Wybieralska; Igor Rozanski; Marek Masnyk; Marek Chmielewski; Robert Lysek; Tadeusz Chojnacki; Wiesław Jankowski; Ewa Ciepichal; Ewa Swiezewska; Michael Tekle; Gustav Dallner


Tetrahedron Letters | 2006

Stereoselectivity in the synthesis of polyprenylphosphoryl β-d-ribofuranoses

Avraham Liav; Ewa Swiezewska; Ewa Ciepichal; Patrick J. Brennan


Tetrahedron Letters | 2006

Stereoselective synthesis of decaprenylphosphoryl β-d-arabinofuranose

Avraham Liav; Hairong Huang; Ewa Ciepichal; Patrick J. Brennan; Michael R. McNeil


Tetrahedron Letters | 2009

Stereoselective syntheses of heptaprenylphosphoryl β-d-arabino-and β-d-ribo-furanoses

Avraham Liav; Ewa Ciepichal; Ewa Swiezewska; Adela Bobovská; Petronela Dianišková; Jaroslav Blaško; Katarína Mikušová; Patrick J. Brennan


Chemistry and Physics of Lipids | 2011

Cationic polyprenyl derivatives proposed as effective DNA carriers

Monika Rak; Anna Ochałek; Marek Masnyk; Marek Chmielewski; Robert Łysek; Tadeusz Chojnacki; Wiesław Jankowski; Ewa Ciepichal; Michael Tekle; Gustav Dallner; Ewa Swiezewska; Zbigniew Madeja

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Ewa Swiezewska

Polish Academy of Sciences

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Tadeusz Chojnacki

Polish Academy of Sciences

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Marek Masnyk

Polish Academy of Sciences

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Avraham Liav

Colorado State University

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Patrick J. Brennan

Brigham and Women's Hospital

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Marek Chmielewski

Polish Academy of Sciences

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Monika Rak

Jagiellonian University

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Jacek Wójcik

Polish Academy of Sciences

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