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Bernhard Ellinger

Researcher at Fraunhofer Society

Publications -  61
Citations -  1907

Bernhard Ellinger is an academic researcher from Fraunhofer Society. The author has contributed to research in topics: Medicine & Trypanosoma brucei. The author has an hindex of 17, co-authored 51 publications receiving 1345 citations. Previous affiliations of Bernhard Ellinger include Max Planck Society.

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The Palmitoylation Machinery Is a Spatially Organizing System for Peripheral Membrane Proteins

TL;DR: This generic spatially organizing system differs from conventional receptor-mediated targeting mechanisms and efficiently counteracts entropy-driven redistribution of palmitoylated peripheral membrane proteins over all membranes.
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X-ray screening identifies active site and allosteric inhibitors of SARS-CoV-2 main protease.

Sebastian Günther, +103 more
- 07 May 2021 - 
TL;DR: In this article, a high-throughput x-ray crystallographic screen of two repurposing drug libraries against the SARS-CoV-2 main protease (Mpro), which is essential for viral replication, was performed.
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Multi-endpoint toxicological assessment of polystyrene nano- and microparticles in different biological models in vitro

TL;DR: This study investigated the transport and effects of 50 nm and 0.5 μm COOH-modified polystyrene (PS) particles, as representatives for NP and MP, in different biological models in vitro, and identified them as weak embryotoxic and non-genotoxic.
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Synthesis and Structure-Activity Correlation of Natural-Product Inspired Cyclodepsipeptides Stabilizing F-Actin

TL;DR: An efficient solid-phase approach has been developed and successfully applied to the total synthesis of jasplakinolide and chondramide C and diverse analogues, and a number of potent unnatural and simplified analogues have been found.
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Biology-oriented synthesis of a natural-product inspired oxepane collection yields a small-molecule activator of the Wnt-pathway.

TL;DR: A one pot 4–7 step synthesis of mono-, bi-, and tricyclic oxepanes that resemble the core scaffolds of numerous NPs with diverse bioactivities and makes productive use of polymer-immobilized scavenger reagents is developed.