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BRAIDing receptors for cell-specific targeting.

Hui Chen | Sung-Jin Lee | Ryan Li | Asmiti Sura | Nicholas Suen | Archana Dilip | Yan Pomogov | Meghah Vuppalapaty | Timothy T Suen | Chenggang Lu | Yorick Post | Yang Li
eLife | 2024

Systemic toxicity is a major challenge in the development of therapeutics. Consequently, cell-type-specific targeting is needed to improve on-target efficacy while reducing off-target toxicity. Here, we describe a cell-targeting system we have termed BRAID (BRidged Activation by Intra/intermolecular Division) whereby an active molecule is divided into two inactive or less active parts that are subsequently brought together via a so-called 'bridging receptor' on the target cell. This concept was validated using the WNT/β-catenin signaling system, demonstrating that a multivalent WNT agonist molecule divided into two inactive components assembled from different epitopes via the hepatocyte receptor βKlotho induces signaling specifically on hepatocytes. These data provide proof of concept for this cell-specific targeting strategy, and in principle, this may also allow activation of multiple signaling pathways where desirable. This approach has broad application potential for other receptor systems.

Pubmed ID: 38193894

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Sartorius Octet BLI systems (tool)

RRID:SCR_023267

Octet BLI systems enable real-time, label-free analysis for determination of kinetics, affinity and antibody/protein quantitation. Includes Octet Analysis Studio for analysis of assays measuring kinetics and affinity values for drug-target binding and high-throughput kinetic screening for lead identification. Typical applications include kinetic analysis of protein-protein, protein-small molecules, antibody-antigen, antibody-VLP, antibody-Fc gamma receptors, including antibody-neonatal receptor (FcRn) interactions. Additional applications supported include lot release and stability analysis of drug molecules based on binding kinetics and affinity.

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