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Anderl, J.

Publications and source records attributed to Anderl, J..

2 recordsLinked to original sources

Welding PROxAb Shuttles: A modular approach for generating bispecific antibodies via site-specific protein-protein conjugation

Targeted protein degradation is an innovative therapeutic strategy to selectively eliminate disease-causing proteins. Exemplified by proteolysis-targeting chimeras (PROTACs), it has shown promise in overcoming drug resistance and targeting previously undruggable proteins. However, PROTACs face challenges such as low oral bioavailability and limited selectivity. The recently published PROxAb Shuttle technology offers a solution enabling targeted delivery of PROTACs using antibodies fused with PROTAC-binding domains derived from camelid single-domain antibodies (VHHs). Here, a modular approach to quickly generate PROxAb Shuttles by enzymatically coupling PROTAC-binding VHHs to off- the-shelf antibodies was developed. The resulting conjugates retained their target binding and internalization properties and incubation with BRD4-targeting PROTACs resulted in formation of defined PROxAb-PROTAC complexes. These complexes selectively induced degradation of the BRD4 protein, resulting in cytotoxicity specifically in cells expressing the antibodys target. The chemoenzymatic approach described here provides a versatile and efficient solution for generating antibody-VHH conjugates for targeted protein degradation applications but could also be used to combine antibody and VHH binders to generate bispecific antibodies for further applications.

biochemistry↗

Signal peptide mimicry primes Sec61 for client-selective inhibition

Preventing the biogenesis of disease-relevant proteins is an attractive therapeutic strategy, but attempts to target essential protein biogenesis factors have been hampered by excessive toxicity. Here, we describe KZR-8445, a cyclic depsipeptide that targets the Sec61 translocon and selectively disrupts secretory and membrane protein biogenesis in a signal peptide-dependent manner. KZR-8445 potently inhibits the secretion of proinflammatory cytokines in primary immune cells and is highly efficacious in a mouse model of rheumatoid arthritis. A cryo-EM structure reveals that KZR-8445 occupies the fully opened Se61 lateral gate and blocks access to the lumenal plug domain. KZR-8445 binding stabilizes the lateral gate helices in a manner that traps select signal peptides in the Sec61 channel and prevents their movement into the lipid bilayer. Our results establish a framework for the structure-guided discovery of novel therapeutics that selectively modulate Sec61-mediated protein biogenesis.

biochemistry↗