PubReading [204] - Antibody targeting of E3 ubiquitin ligases for receptor degradation - H. Marei, F. de Sousa e Melo et al. episode artwork

EPISODE · Oct 21, 2022 · 31 MIN

PubReading [204] - Antibody targeting of E3 ubiquitin ligases for receptor degradation - H. Marei, F. de Sousa e Melo et al.

from PubReading

Most current therapies that target plasma membrane receptors function by antagonizing ligand binding or enzymatic activities. However, typical mammalian proteins comprise multiple domains that execute discrete but coordinated activities. Thus, inhibition of one domain often incompletely suppresses the function of a protein. Indeed, targeted protein degradation technologies, including proteolysis-targeting chimeras1 (PROTACs), have highlighted clinically important advantages of target degradation over inhibition2. However, the generation of heterobifunctional compounds binding to two targets with high affinity is complex, particularly when oral bioavailability is required3. Here we describe the development of proteolysis-targeting antibodies (PROTABs) that tether cell-surface E3 ubiquitin ligases to transmembrane proteins, resulting in target degradation both in vitro and in vivo. Focusing on zinc- and ring finger 3 (ZNRF3), a Wnt-responsive ligase, we show that this approach can enable colorectal cancer-specific degradation. Notably, by examining a matrix of additional cell-surface E3 ubiquitin ligases and transmembrane receptors, we demonstrate that this technology is amendable for ‘on-demand’ degradation. Furthermore, we offer insights on the ground rules governing target degradation by engineering optimized antibody formats. In summary, this work describes a strategy for the rapid development of potent, bioavailable and tissue-selective degraders of cell-surface proteins.https://doi.org/10.1038/s41586-022-05235-6 - 2022

Episode metadata supplied by the publisher feed · Published Oct 21, 2022

Embed this episode

NOW PLAYING

PubReading [204] - Antibody targeting of E3 ubiquitin ligases for receptor degradation - H. Marei, F. de Sousa e Melo et al.

0:00 31:15

No transcript for this episode yet

We transcribe on demand. Request one and we'll notify you when it's ready — usually under 10 minutes.

No similar episodes found.

No similar podcasts found.

Frequently Asked Questions

How long is this episode of PubReading?

This episode is 31 minutes long.

When was this PubReading episode published?

This episode was published on October 21, 2022.

Can I download this PubReading episode?

Yes. Use the download control on the episode player to save the publisher-provided media file.
URL copied to clipboard!