Deubiquitinase USP9X loss sensitizes renal cancer cells to mTOR inhibition

Author:

Roldán‐Romero Juan M.1,Valdivia Carlos1,Santos Maria1,Lanillos Javier1,Maroto Pablo2,Anguera Georgia2,Calsina Bruna1,Martinez‐Montes Angel1,Monteagudo María1,Mellid Sara1,Leandro‐García Luis J.1,Montero‐Conde Cristina1ORCID,Cascón Alberto13,Roncador Giovanna4,Coloma Javier5,Robledo Mercedes13,Rodriguez‐Antona Cristina13ORCID

Affiliation:

1. Hereditary Endocrine Cancer Group Human Cancer Genetics Programme, Spanish National Cancer Research Centre (CNIO) Madrid Spain

2. Department of Medical Oncology Hospital de la Santa Creu i Sant Pau Barcelona Spain

3. Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER) Spain

4. Monoclonal Antibodies Core Unit Spanish National Cancer Research Centre (CNIO) Madrid Spain

5. Structural Biology Programme Spanish National Cancer Research Centre (CNIO) Madrid Spain

Abstract

AbstractMammalian target of rapamycin (mTOR) is a central regulator of mammalian metabolism and physiology. Aberrant hyperactivation of the mTOR pathway promotes tumor growth and metastasis, and can also promote tumor resistance to chemotherapy and cancer drugs; this makes mTOR an attractive cancer therapeutic target. mTOR inhibitors have been approved to treat cancer; however, the mechanisms underlying drug sensitivity remain poorly understood. Here, whole exome sequencing of three chromophobe renal cell carcinoma (chRCC) patients with exceptional mTOR inhibitor sensitivity revealed that all three patients shared somatic mutations in the deubiquitinase gene USP9X. The clonal characteristics of the mutations, which were amassed by studying multiple patients' primary and metastatic samples from various years, together with the low USP9X mutation rate in unselected chRCC series, reinforced a causal link between USP9X and mTOR inhibitor sensitivity. Rapamycin treatment of USP9X‐depleted HeLa and renal cancer 786‐O cells, along with the pharmacological inhibition of USP9X, confirmed that this protein plays a role in patients' sensitivity to mTOR inhibitors. USP9X was not found to exert a direct effect on mTORC1, but subsequent ubiquitylome analyses identified p62 as a direct USP9X target. Increased p62 ubiquitination and the augmented rapamycin effect upon bortezomib treatment, together with the results of p62 and LC3 immunofluorescence assays, suggested that dysregulated autophagy in USP9X‐depleted cells can have a synergistic effect with mTOR inhibitors. In summary, we show that USP9X constitutes a potential novel marker of sensitivity to mTOR inhibitors in chRCC patients, and represents a clinical strategy for increasing the sensitivity to these drugs.

Funder

Ministerio de Ciencia e Innovación

Publisher

Wiley

Subject

Cancer Research,Oncology

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