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Genome-wide functional screening identifies CDC37 as a crucial HSP90-cofactor for KIT oncogenic expression in
A Mariño-Enríquez1, W-B Ou2, G Cowley3
11] Department of Pathology, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA [2] Departamento de Anatomía Patológica, Hospital Universitario La Paz, Fundación para la Investigación Biomédica FIBHULP, Universidad Autónoma de Madrid, IdiPAZ, Madrid, Spain.
Abstract:
Most gastrointestinal stromal tumors (GISTs) contain KIT or PDGFRA kinase gain-of-function mutations, and therefore respond clinically to imatinib and other tyrosine kinase inhibitor (TKI) therapies. However, clinical progression subsequently results from selection of TKI-resistant clones, typically containing secondary mutations in the KIT kinase domain, which can be heterogeneous between and within GIST metastases in a given patient. TKI-resistant KIT oncoproteins require HSP90 chaperoning and are potently inactivated by HSP90 inhibitors, but clinical applications in GIST patients are constrained by the toxicity resulting from concomitant inactivation of various other HSP90 client proteins, beyond KIT and PDGFRA. To identify novel targets responsible for KIT oncoprotein function, we performed parallel genome-scale short hairpin RNA (shRNA)-mediated gene knockdowns in KIT-mutant GIST-T1 and GIST882. GIST cells were infected with a lentiviral shRNA pooled library targeting 11 194 human genes, and allowed to proliferate for 5-7 weeks, at which point assessment of relative hairpin abundance identified the HSP90 cofactor, CDC37, as one of the top six GIST-specific essential genes. Validations in treatment-naive (GIST-T1, GIST882) vs imatinib-resistant GISTs (GIST48, GIST430) demonstrated that: (1) CDC37 interacts with oncogenic KIT; (2) CDC37 regulates expression and activation of KIT and downstream signaling intermediates in GIST; and (3) unlike direct HSP90 inhibition, CDC37 knockdown accomplishes prolonged KIT inhibition (>20 days) in GIST. These studies highlight CDC37 as a key biologic vulnerability in both imatinib-sensitive and imatinib-resistant GIST. CDC37 targeting is expected to be selective for KIT/PDGFRA and a subset of other HSP90 clients, and thereby represents a promising strategy for inactivating the myriad KIT/PDGFRA oncoproteins in TKI-resistant GIST patients.
Insights
Targeting CDC37, an HSP90 cofactor, offers a novel strategy for treating gastrointestinal stromal tumors (GISTs). This approach effectively inhibits KIT oncoproteins in both imatinib-sensitive and resistant GIST, overcoming current treatment limitations.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Most gastrointestinal stromal tumors (GISTs) harbor KIT or PDGFRA mutations, initially responding to tyrosine kinase inhibitors (TKIs).
- Acquired resistance to TKIs, driven by secondary mutations, leads to clinical progression in GIST patients.
- Current HSP90 inhibitors cause toxicity due to broad client protein inhibition, limiting their use in GIST.
Purpose of the Study:
- To identify novel therapeutic targets for overcoming TKI resistance in GIST.
- To investigate the role of HSP90 cofactors in maintaining KIT oncoprotein function in GIST.
- To evaluate CDC37 as a potential therapeutic target for both imatinib-sensitive and resistant GIST.
Main Methods:
- Genome-scale shRNA screening in KIT-mutant GIST cell lines (GIST-T1, GIST882).
- Identification of essential genes using pooled lentiviral shRNA libraries and hairpin abundance analysis.
- Validation of CDC37's role through interaction studies, expression analysis, and knockdown experiments in various GIST models.
Main Results:
- CDC37 was identified as a GIST-specific essential gene and a key cofactor for HSP90.
- CDC37 knockdown demonstrated prolonged inhibition of KIT oncoprotein and downstream signaling in GIST cells.
- CDC37 interacts with oncogenic KIT and regulates its expression and activation.
Conclusions:
- CDC37 is a critical vulnerability in both imatinib-sensitive and imatinib-resistant GIST.
- Targeting CDC37 offers a selective strategy for inhibiting KIT/PDGFRA oncoproteins, potentially overcoming TKI resistance.
- CDC37 inhibition represents a promising therapeutic avenue for GIST patients with refractory disease.
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