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Dive into the research topics where Susanne Mödder is active.

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Featured researches published by Susanne Mödder.


Biological Chemistry | 2010

Structural studies of the phosphatidylinositol 3-kinase (PI3K) SH3 domain in complex with a peptide ligand: role of the anchor residue in ligand binding.

Renu Batra-Safferling; Joachim Granzin; Susanne Mödder; Silke Hoffmann; Dieter Willbold

Abstract Src homology 3 (SH3) domains are mediators of protein-protein interactions. They comprise approximately 60 amino acid residues and are found in many intracellular signaling proteins. Here, we present the crystal structure of the SH3 domain from phosphatidylinositol 3-kinase (PI3K) in complex with the 12-residue proline-rich peptide PD1R (HSKRPLPPLPSL). The crystal structure of the PI3K SH3-PD1R complex at a resolution of 1.7 Å reveals type I ligand orientation of the bound peptide with an extended conformation where the central portion forms a left-handed type II polyproline (PPII) helix. The overall structure of the SH3 domain shows minimal changes on ligand binding. In addition, we also attempted crystallization with another peptide ligand (PD1) where the residue at anchor position P-3 is a tyrosine. The crystals obtained did not contain the PD1 ligand; instead, the ligand binding site is partially occupied by residues Arg18 and Trp55 from the symmetry-related PI3K SH3 molecule. Considering these crystal structures of PI3K SH3 together with published reports, we provide a comparative analysis of protein-ligand interactions that has helped us identify the individual residues which play an important role in defining target specificity.


Archive | 2007

Molecules clinging specifically to a lure and their use

Dieter Willbold; Silke Hoffmann; Katja Wiesehan; Thi Tuyen Tran; Susanne Mödder; Amine Aladag; Julian Glück


Archive | 2007

Specific molecules clinging to a lure

Dieter Willbold; Silke Hoffmann; Katja Wiesehan; Tran Thi Tuyen Bujnicki; Susanne Mödder; Amine Aladag; Julian Glück


Archive | 2007

Molécules liées à un hameçon de manière spécifique

Dieter Willbold; Silke Hoffmann; Katja Wiesehan; Tran Thi Tuyen Bujnicki; Susanne Mödder; Amine Aladag; Julian Glück


Archive | 2007

Verfahren zum Auffinden von spezifisch an einen Köder bindende Moleküle

Dieter Willbold; Silke Hoffmann; Katja Wiesehan; Thi Tuyen Bujnicki; Susanne Mödder; Amine Aladag; Julian Glück


Archive | 2007

Verfahren zum Auffinden von spezifisch an einen Köder bindende Moleküle sowie spezifisch an einen Köder bindende Moleküle und deren Verwendung

Dieter Willbold; Silke Hoffmann; Katja Wiesehan; Thi Tuyen Tran; Susanne Mödder; Amine Aladag; Julian Glück


Archive | 2007

Spezifisch an einen Köder bindende Moleküle

Dieter Willbold; Silke Hoffmann; Katja Wiesehan; Tran Thi Tuyen Bujnicki; Susanne Mödder; Amine Aladag; Julian Glück


Archive | 2007

Molécule se liant spécifiquement à un codeur

Dieter Willbold; Silke Hoffmann; Katja Wiesehan; Tran Thi Tuyen Bujnicki; Susanne Mödder; Amine Aladag; Julian Glück


Archive | 2007

Procédé destiné à la recherche de molécules se liant spécifiquement à un appât tout comme molécule se liant spécifiquement sur un appât et son utilisation

Dieter Willbold; Silke Hoffmann; Katja Wiesehan; Thi Tuyen Bujnicki; Susanne Mödder; Amine Aladag; Julian Glück


Archive | 2007

SPEZIFISCH AN EINEN KÖDER BINDENDE MOLEKÜLE UND DEREN VERWENDUNG

Dieter Willbold; Silke Hoffmann; Katja Wiesehan; Thi Tuyen Tran; Susanne Mödder; Amine Aladag; Julian Glück

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Dieter Willbold

University of Düsseldorf

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Amine Aladag

University of Düsseldorf

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Julian Glück

Forschungszentrum Jülich

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Katja Wiesehan

Forschungszentrum Jülich

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Silke Hoffmann

Forschungszentrum Jülich

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Thi Tuyen Tran

Forschungszentrum Jülich

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Joachim Granzin

Forschungszentrum Jülich

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