Small molecules to regulate the GH/IGF1 axis by inhibiting the growth hormone receptor synthesis

Publication date

2022-07-28

Authors

van der Velden, Lieke M
Maas, Peter
van Amersfoort, Miranda
Timmermans-Sprang, ElpetraISNI 0000000492958370
Mensinga, AnneloesISNI 0000000393806208
van der Vaart, Elisabeth
Malergue, Fabrice
Viëtor, Henk
Derksen, Patrick W B
Klumperman, Judith

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Growth hormone (GH) and insulin-like growth factor-1 (IGF1) play an important role in mammalian development, cell proliferation and lifespan. Especially in cases of tumor growth there is an urgent need to control the GH/IGF1 axis. In this study we screened a 38,480-compound library, and in two consecutive rounds of analogues selection, we identified active lead compounds based on the following criteria: inhibition the GH receptor (GHR) activity and its downstream effectors Jak2 and STAT5, and inhibition of growth of breast and colon cancer cells. The most active small molecule (BM001) inhibited both the GH/IGF1 axis and cell proliferation with an IC50 of 10-30 nM of human cancer cells. BM001 depleted GHR in human lymphoblasts. In preclinical xenografted experiments, BM001 showed a strong decrease in tumor volume in mice transplanted with MDA-MB-231 breast cancer cells. Mechanistically, the drug acts on the synthesis of the GHR. Our findings open the possibility to inhibit the GH/IGF1 axis with a small molecule.

Keywords

BM001, GH inhibitor, IGF1 inhibitor, autocrine, cancer, ribosomal synthesis, Endocrinology, Diabetes and Metabolism, SDG 3 - Good Health and Well-being

Citation

van der Velden, L M, Maas, P, van Amersfoort, M, Timmermans-Sprang, E P M, Mensinga, A, van der Vaart, E, Malergue, F, Viëtor, H, Derksen, P W B, Klumperman, J, van Agthoven, A, Egan, D A, Mol, J A & Strous, G J 2022, 'Small molecules to regulate the GH/IGF1 axis by inhibiting the growth hormone receptor synthesis', Frontiers in Endocrinology, vol. 13, 926210, pp. 1-14. https://doi.org/10.3389/fendo.2022.926210