Abstract

Targeted protein degradation has recently emerged as a novel option in drug discovery. Natural protein half-life is expected to affect the efficacy of degrading agents, but to what extent it influences target protein degradation has not been systematically explored. Using mathematical modelling of protein degradation, we demonstrate that the natural half-life of a target protein has a dramatic effect on the level of protein degradation induced by a degrader agent which can pose significant hurdles to screening efforts. Moreover, we show that upon screening for degraders of short-lived proteins, agents that stall protein synthesis, such as GSPT1 degraders and generally cytotoxic compounds, deceptively appear as protein degrading agents. This is exemplified by the disappearance of short-lived proteins such as MCL1 and MDM2 upon GSPT1 degradation and upon treatment with cytotoxic agents such as doxorubicin. These findings have implications for target selection as well as for the type of control experiments required to conclude that a novel agent works as a bona fide targeted protein degrader.

Competing Interest Statement

JE, AS, AK, TG, NC, TG, TC, GD, PG, NB, PE, CK and MK are direct employees of Boehringer Ingelheim RCV GmbH & Co KG. The Ciulli laboratory receives or has received sponsored research support from Almirall, Amgen, Amphista Therapeutics, Boehringer Ingelheim, Eisai, Merck KGaA, Nurix Therapeutics, Ono Pharmaceutical and Tocris-Biotechne. A.C. is a scientific founder, shareholder, and advisor of Amphista Therapeutics, a company that is developing targeted protein degradation therapeutic platforms.

Details

Title
Confounding factors in targeted degradation of short-lived proteins
Author
Vetma, Vesna; Laura Casares Perez; Elias, Jan; Stingu, Andrea; Kombara, Anju; Gmaschitz, Teresa; Braun, Nina; Ciftci, Tuncay; Dahmann, Georg; Diers, Emelyne; Gerstberger, Thomas; Greb, Peter; Kidd, Giorgia; Kofink, Christiane; Puoti, Ilaria; Spiteri, Valentina; Trainor, Nicole; Westermaier, Yvonne; Whitworth, Claire; Ciulli, Alessio; Farnaby, William; Mcaulay, Kirsten; Frost, Aileen B; Chessum, Nicola; Koegl, Manfred
University/institution
Cold Spring Harbor Laboratory Press
Section
New Results
Publication year
2024
Publication date
Feb 22, 2024
Publisher
Cold Spring Harbor Laboratory Press
ISSN
2692-8205
Source type
Working Paper
Language of publication
English
ProQuest document ID
2930089154
Copyright
© 2024. This article is published under http://creativecommons.org/licenses/by/4.0/ (“the License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.