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Updated: May 3, 2026

A Melanoma Patient-Derived Xenograft Model
Published on: May 20, 2019
GZ17-6.02 kills PDX isolates of uveal melanoma
Laurence Booth1, Jane L Roberts1, Ivan Spasojevic2
1Department of Biochemistry and Molecular Biology, Virginia Commonwealth University, Richmond, VA 23298, USA.
Abstract:
GZ17-6.02 has undergone phase I evaluation in patients with solid tumors (NCT03775525). The RP2D is 375 mg PO BID, with an uveal melanoma patient exhibiting a 15% reduction in tumor mass for 5 months at this dose. Studies in this manuscript have defined the biology of GZ17-6.02 in PDX isolates of uveal melanoma cells. GZ17-6.02 killed uveal melanoma cells through multiple convergent signals including enhanced ATM-AMPK-mTORC1 activity, inactivation of YAP/TAZ and inactivation of eIF2α. GZ17-6.02 significantly enhanced the expression of BAP1, predictive to reduce metastasis, and reduced the levels of ERBB family RTKs, predicted to reduce growth. GZ17-6.02 interacted with doxorubicin or ERBB family inhibitors to significantly enhance tumor cell killing which was associated with greater levels of autophagosome formation and autophagic flux. Knock down of Beclin1, ATG5 or eIF2α were more protective than knock down of ATM, AMPKα, CD95 or FADD, however, over-expression of FLIP-s provided greater protection compared to knock down of CD95 or FADD. Expression of activated forms of mTOR and STAT3 significantly reduced tumor cell killing. GZ17-6.02 reduced the expression of PD-L1 in uveal melanoma cells to a similar extent as observed in cutaneous melanoma cells whereas it was less effective at enhancing the levels of MHCA. The components of GZ17-6.02 were detected in tumors using a syngeneic tumor model. Our data support future testing GZ17-6.02 in uveal melanoma as a single agent, in combination with ERBB family inhibitors, in combination with cytotoxic drugs, or with an anti-PD1 immunotherapy.
Insights
GZ17-6.02 shows promise in treating uveal melanoma by targeting multiple cell death pathways. Further studies will explore its efficacy as a single agent or in combination therapies.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Uveal melanoma is a rare but aggressive eye cancer with limited treatment options.
- GZ17-6.02 is an investigational agent that has shown preliminary activity in solid tumors.
Purpose of the Study:
- To elucidate the biological mechanisms of GZ17-6.02 in uveal melanoma.
- To evaluate the efficacy of GZ17-6.02 as a single agent and in combination therapies.
Main Methods:
- Studies were conducted in patient-derived xenograft (PDX) isolates of uveal melanoma cells.
- Mechanisms of action were investigated through gene knockdown and overexpression studies.
- Combination therapies were tested with doxorubicin, ERBB family inhibitors, and anti-PD1 immunotherapy.
Main Results:
- GZ17-6.02 induced uveal melanoma cell death via ATM-AMPK-mTORC1 activation, YAP/TAZ and eIF2α inactivation.
- It enhanced BAP1 expression and reduced ERBB family RTKs, suggesting anti-metastatic and anti-proliferative effects.
- Combinations with doxorubicin or ERBB inhibitors increased tumor cell killing through enhanced autophagy.
- GZ17-6.02 reduced PD-L1 expression in uveal melanoma cells.
Conclusions:
- GZ17-6.02 exhibits potent anti-tumor activity in uveal melanoma through multiple molecular pathways.
- The agent demonstrates potential for combination therapies, including with ERBB inhibitors, cytotoxic drugs, or immunotherapy.
- Further clinical investigation of GZ17-6.02 in uveal melanoma is warranted.
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