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September 10, 2025Nature Communications13 citationsOpen Access

LYMTACs:chimeric small molecules repurpose lysosomal membrane proteins for target protein relocalization and degradation

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DNDhanusha A. NalawanshaGMGeorgios MazisGHGitte Husemoen

Key Points

  • LYMTACs effectively target membrane proteins for lysosomal degradation, enhancing therapeutic potential in cancer.
  • A promiscuous kinase inhibitor-based LYMTAC shows significant inhibition of oncogenic KRASG12D signaling.
  • The approach harnesses multi-pharmacology to facilitate both target relocalization and degradation across various lysosomal membrane proteins.
  • LYMTACs represent a promising platform for accessing challenging membrane proteins within cellular pathways.

Abstract

Proximity-inducing modalities that co-opt cellular pathways offer new opportunities to regulate oncogenic drivers. Inspired by the success of proximity-based chimeras in both intracellular and extracellular target space, here we describe the development of LYsosome Membrane TArgeting Chimeras (LYMTACs) as a small molecule-based platform that functions intracellularly to modulate the membrane proteome. Conceptually, LYMTACs are heterobifunctional small molecules that co-opt short-lived lysosomal membrane proteins (LMPs) as effectors to deliver targets for lysosomal degradation. We demonstrate that a promiscuous kinase inhibitor-based LYMTAC selectively targets membrane proteins for lysosomal degradation via RNF152, a short-lived LMP. We extend this concept by showing that oncogenic KRASG12D signaling can be potently inhibited by LYMTACs. Mechanistically, LYMTACs display multi-pharmacology and exert their activity through both target relocalization into the lysosome and degradation. We further generalize LYMTACs across various LMPs and thus offer a platform to access challenging membrane proteins through targeted protein relocalization and degradation.

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Cite This Study

Nalawansha et al. (2025) studied this question.

synapsesocial.com/papers/68c1cc4754b1d3bfb60f4d4dhttps://doi.org/10.1038/s41467-025-63128-4
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