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Polyvalent folate receptor-targeting chimeras for degradation of membrane proteins.

Nature chemical biology 2025 Vol.21(11) p. 1731-1741

Xiao D, Dong J, Xie F, Feng X, Wang J, Xu X, Tang B, Sun C, Wang Y, Zhong W, Deng H, Zhou X, Li S

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Lysosome-targeting chimeras (LYTACs) represent a revolutionary targeted protein degradation technology.

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BibTeX ↓ RIS ↓
APA Xiao D, Dong J, et al. (2025). Polyvalent folate receptor-targeting chimeras for degradation of membrane proteins.. Nature chemical biology, 21(11), 1731-1741. https://doi.org/10.1038/s41589-025-01924-1
MLA Xiao D, et al.. "Polyvalent folate receptor-targeting chimeras for degradation of membrane proteins.." Nature chemical biology, vol. 21, no. 11, 2025, pp. 1731-1741.
PMID 40514550

Abstract

Lysosome-targeting chimeras (LYTACs) represent a revolutionary targeted protein degradation technology. However, the advancement of LYTACs faces substantial challenges due to the limited diversity of lysosome-trafficking receptors. In this study, we identified folate receptor α (FRα) as a new class of lysosome-trafficking receptors capable of facilitating the degradation of membrane proteins. Leveraging a polyvalent crosslinking strategy, we developed FRα-targeting chimeras (FRTACs), including epidermal growth factor receptor-targeting FR-Ctx and PD-L1-targeting FR-Atz. The optimized FRTACs demonstrated subnanomolar potency in eliminating cell-surface targets, with efficacy dependent on both FRα expression and lysosomal activity. Specifically, FR-Ctx inhibited cancer cell proliferation, while FR-Atz enhanced T cell-mediated cytotoxicity against tumor cells. FR-Atz exhibited robust PD-L1 degradation efficiency in vivo and elicited tumor-specific immune responses by reprogramming the tumor microenvironment from an immunosuppressive to an immunostimulatory state in both RM-1 and humanized B16F10 mouse models. These findings establish FRTACs as a promising platform for the design of tumor-targeting LYTACs.

MeSH Terms

Animals; Humans; Mice; Folate Receptor 1; Lysosomes; Proteolysis; Cell Line, Tumor; Membrane Proteins; Cell Proliferation; B7-H1 Antigen; Mice, Inbred C57BL; Tumor Microenvironment

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