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Linker-Dependent Folding Rationalizes PROTAC Cell Permeability
Uppsala universitet, Teknisk-naturvetenskapliga vetenskapsområdet, Kemiska sektionen, Institutionen för kemi - BMC, Organisk kemi.ORCID-id: 0000-0002-8880-9247
Uppsala universitet, Teknisk-naturvetenskapliga vetenskapsområdet, Kemiska sektionen, Institutionen för kemi - BMC, Organisk kemi.ORCID-id: 0000-0003-2899-9912
Bayer AG, Drug Discovery Sci, D-13342 Berlin, Germany..
Bayer AG, Drug Discovery Sci, D-13342 Berlin, Germany..
Vise andre og tillknytning
2022 (engelsk)Inngår i: Journal of Medicinal Chemistry, ISSN 0022-2623, E-ISSN 1520-4804, Vol. 65, nr 19, s. 13029-13040Artikkel i tidsskrift (Fagfellevurdert) Published
Abstract [en]

Proteolysis-targeting chimeras (PROTACs) must be cell permeable to reach their target proteins. This is challenging as the bivalent structure of PROTACs puts them in chemical space at, or beyond, the outer limits of oral druggable space. We used NMR spectroscopy and molecular dynamics (MD) simulations independently to gain insights into the origin of the differences in cell permeability displayed by three flexible cereblon PROTACs having closely related structures. Both methods revealed that the propensity of the PROTACs to adopt folded conformations with a low solvent-accessible 3D polar surface area in an apolar environment is correlated to high cell permeability. The chemical nature and the flexibility of the linker were essential for the PROTACs to populate folded conformations stabilized by intramolecular hydrogen bonds, pi-pi interactions, and van der Waals interactions. We conclude that MD simulations may be used for the prospective ranking of cell permeability in the design of cereblon PROTACs.

sted, utgiver, år, opplag, sider
American Chemical Society (ACS), 2022. Vol. 65, nr 19, s. 13029-13040
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Identifikatorer
URN: urn:nbn:se:uu:diva-488227DOI: 10.1021/acs.jmedchem.2c00877ISI: 000863621500001PubMedID: 36170570Scopus ID: 2-s2.0-85139179763OAI: oai:DiVA.org:uu-488227DiVA, id: diva2:1710748
Ingår i projekt
Design av kemiska verktyg för utveckling av läkemedel bortom ¬®regeln om 5¬®, Swedish Research Council
Forskningsfinansiär
Swedish Research Council, 2016-05160Swedish National Infrastructure for Computing (SNIC), SNIC 2019/3-295Swedish National Infrastructure for Computing (SNIC), SNIC2020/5-435Swedish National Infrastructure for Computing (SNIC), SNIC2021/22-244Tilgjengelig fra: 2022-11-14 Laget: 2022-11-14 Sist oppdatert: 2025-06-18bibliografisk kontrollert

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Poongavanam, VasanthanathanAtilaw, YosephErdélyi, MátéKihlberg, Jan

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