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The Bi-steric Inhibitor RMC-5552 Reduces mTORC1 Signaling and Growth in Lymphangioleiomyomatosis

  • Jilly F. Evans
  • , Owen A. Ledwell
  • , Yan Tang
  • , Ryan Rue
  • , Alexander R. Mukhitov
  • , Rémi Diesler
  • , Susan M. Lin
  • , Kanth Swaroop Vanka
  • , Maria C. Basil
  • , Edward Cantu
  • , Elizabeth P. Henske
  • , Vera P. Krymskaya

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

Mutations in the TSC (tuberous sclerosis complex) genes result in the hyperactivation of the mTORC1 (mechanistic/mammalian target of rapamycin 1) growth pathway in mesenchymal pulmonary cells. Rapamycin (sirolimus), a naturally occurring macrolide, is the only therapeutic approved for women with lymphangioleiomyomatosis (LAM), a progressive, destructive lung disease caused by TSC gene mutations and mTORC1 hyperactivation. However, on cessation of the drug, lung function decline continues. We demonstrated here that pulmonary LAM cancer stem-like state (SLS) cells most highly expressed the eIF4E (eukaryotic translation initiation factor 4E)-dependent translation initiation genes. We also showed that the 4E-BP1 (eukaryotic initiation factor 4E-binding protein 1) gene has the lowest expression in these cells, indicating that the 4E-BP1/eIF4E ratio in LAM SLS cells favors unrestrained eIF4E oncogenic mRNA translation. The bi-steric mTORC1-selective compound RMC-5552 prevented growth of LAM-associated fibroblasts and phosphorylation of proteins in the ribosomal protein S6K1/ribosomal protein S6 (S6K1/S6) and 4E-BP1/eIF4E translation mTORC1-driven pathways, whereas rapamycin only blocked the S6K/S6 axis. Rapamycin inhibition of LAM-associated fibroblast growth was rapidly reversed, but RMC-5552 inhibition was more durable. RMC-5552, through its potential to eradicate LAM cancer SLS cells, may have therapeutic benefit in LAM and other diseases with mTORC1 hyperactivity.

Original languageEnglish
Pages (from-to)643-652
Number of pages10
JournalAmerican Journal of Respiratory Cell and Molecular Biology
Volume72
Issue number6
DOIs
StatePublished - Jun 1 2025

Bibliographical note

Publisher Copyright:
Copyright © 2025 by the American Thoracic Society.

Funding

Supported by National Institutes of Health/National Heart, Lung, and Blood Institute Clinical Center grants R01HL151467 (V.P.K.), RO1HL158737 (V.P.K.), RO1 UO1 HL131022 (L.P.H., V.P.K.), and RO1HL155821 (E.C.). Supported by National Institutes of Health/National Heart, Lung, and Blood Institute Clinical Center grants R01HL151467 (V.P.K.), RO1HL158737 (V.P.K.), RO1 UO1 HL131022 (L.P.H., V.P.K.), and RO1HL155821 (E.C.). The authors thank patients with lymphangioleiomyomatosis who contributed tissues for these studies, the National Disease Research Institute for collecting and distributing these samples, Professors Nahum Sonenberg and Marina Holz for helpful discussions, John Hutchinson for chemical structures, and Kevin Clark for the exquisite cartoons. The authors thank the Pathology Core Laboratory of the Children’s Hospital of Philadelphia Research Institute and the Specialized Histopathology Core at the Boston Dana/Farber/Harvard Cancer Centre for providing histology services.

FundersFunder number
National Institutes of Health (NIH)
National Research Institute of Tuberculosis and Lung Disease Tehran
Children's Hospital of Philadelphia
National Heart, Lung, and Blood Institute (NHLBI)R01HL151467, RO1HL158737, RO1 UO1 HL131022, RO1HL155821

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being

    Keywords

    • lymphangioleiomyomatosis
    • mTORC1
    • rapamycin
    • RMC-5552 bi-steric inhibitor
    • TSC2

    ASJC Scopus subject areas

    • Molecular Biology
    • Pulmonary and Respiratory Medicine
    • Clinical Biochemistry
    • Cell Biology

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