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Precipitation-free high-affinity multivalent binding by inline lectin ligands

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2020

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Chemical Science. Royal Society of Chemistry (RSC). 2020, 11(20), pp. 5227-5237. ISSN 2041-6520. eISSN 2041-6539. Available under: doi: 10.1039/d0sc01744b

Zusammenfassung

Multivalent ligand–protein interactions are a key concept in biology mediating, for example, signalling and adhesion. Multivalent ligands often have tremendously increased binding affinities. However, they also can cause crosslinking of receptor molecules leading to precipitation of ligand–receptor complexes. Plaque formation due to precipitation is a known characteristic of numerous fatal diseases limiting a potential medical application of multivalent ligands with a precipitating binding mode. Here, we present a new design of high-potency multivalent ligands featuring an inline arrangement of ligand epitopes with exceptionally high binding affinities in the low nanomolar range. At the same time, we show with a multi-methodological approach that precipitation of the receptor is prevented. We distinguish distinct binding modes of the ligands, in particular we elucidate a unique chelating binding mode, where four receptor binding sites are simultaneously bridged by one multivalent ligand molecule. The new design concept of inline multivalent ligands, which we established for the well-investigated model lectin wheat germ agglutinin, has great potential for the development of high-potency multivalent inhibitors as future therapeutics.

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ISO 690ROHSE, Philipp, Sabrina WEICKERT, Malte DRESCHER, Valentin WITTMANN, 2020. Precipitation-free high-affinity multivalent binding by inline lectin ligands. In: Chemical Science. Royal Society of Chemistry (RSC). 2020, 11(20), pp. 5227-5237. ISSN 2041-6520. eISSN 2041-6539. Available under: doi: 10.1039/d0sc01744b
BibTex
@article{Rohse2020-05-27Preci-50013,
  year={2020},
  doi={10.1039/d0sc01744b},
  title={Precipitation-free high-affinity multivalent binding by inline lectin ligands},
  number={20},
  volume={11},
  issn={2041-6520},
  journal={Chemical Science},
  pages={5227--5237},
  author={Rohse, Philipp and Weickert, Sabrina and Drescher, Malte and Wittmann, Valentin}
}
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