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Chemical Inactivation of the E3 Ubiquitin Ligase Cereblon by Pomalidomide-based Homo-PROTACs
Published on: May 15, 2019
Dual STAT3/STAT5 inhibition as a novel treatment strategy in T-prolymphocytic leukemia
Annika Dechow1, Sanna Timonen2,3,4, Aleksandr Ianevski3
1Department I of Internal Medicine, Center for Integrated Oncology Aachen-Bonn-Cologne-Düsseldorf, University Hospital Cologne, Cologne, Germany.
Abstract:
T-prolymphocytic leukemia (T-PLL) is a rare, aggressive T-cell malignancy with poor outcomes and an urgent need for new therapeutic approaches. Integrating genomic data and new transcriptomic profiling, we identified recurrent JAK/STAT mutations (predominantly in JAK3 and STAT5B) as hallmarks in a cohort of 335 T-PLL cases. In line, transcriptomic and protein analyses revealed constitutive JAK/STAT activation in virtually all samples. Consequently, we explored the anti-leukemic potential of dual STAT3/STAT5 non-PROTAC degraders in T-PLL, with JPX-1244 as our lead substance. JPX-1244 efficiently and selectively induced cell death in primary T-PLL samples, including those resistant to conventional therapies, by blocking STAT3 and STAT5 phosphorylation and by inducing their degradation. The extent of STAT3/STAT5 degradation directly correlated with cytotoxicity. RNA-sequencing confirmed the treatment-related downregulation of STAT5 target genes. While JAK/STAT mutations did not predict responses to pharmacologic STAT3/STAT5 degradation, elevated expression of TOX, PAK6, and SPINT1 were associated with drug sensitivity. In subsequent combination screenings, cladribine, venetoclax, and azacytidine emerged as most effective combination partners of STAT3/STAT5 degraders, even in low-responding T-PLL samples, all synergistically reducing STAT5 phosphorylation. These findings highlight dual STAT3/STAT5 inhibition, particularly in combination with hypomethylating and BCL2-targeting agents, as a promising interventional approach in T-PLL, warranting further investigation.
Insights
New research identifies JAK/STAT mutations in T-prolymphocytic leukemia (T-PLL). Dual STAT3/STAT5 degraders, like JPX-1244, show promise in treating this aggressive cancer, especially in combination therapies.
Area of Science:
- Hematology
- Oncology
- Molecular Biology
Background:
- T-prolymphocytic leukemia (T-PLL) is a rare, aggressive T-cell malignancy with limited therapeutic options.
- Genomic and transcriptomic analyses are crucial for understanding T-PLL pathogenesis and identifying therapeutic targets.
Purpose of the Study:
- To investigate the role of JAK/STAT pathway mutations and activation in T-PLL.
- To evaluate the efficacy of dual STAT3/STAT5 degraders as a novel therapeutic strategy for T-PLL.
- To identify predictive biomarkers for treatment response and effective combination therapies.
Main Methods:
- Genomic and transcriptomic profiling of 335 T-PLL cases.
- Analysis of JAK/STAT mutations and constitutive activation.
- In vitro evaluation of dual STAT3/STAT5 degraders (JPX-1244) on primary T-PLL cells.
- RNA-sequencing to assess target gene modulation.
- Combination screening with established chemotherapeutic agents.
Main Results:
- Recurrent JAK/STAT mutations (JAK3, STAT5B) and constitutive activation were identified in T-PLL.
- JPX-1244 demonstrated potent and selective induction of T-PLL cell death, correlating with STAT3/STAT5 degradation.
- Elevated TOX, PAK6, and SPINT1 expression predicted sensitivity to STAT3/STAT5 degradation.
- Combinations of STAT3/STAT5 degraders with cladribine, venetoclax, or azacytidine showed synergistic efficacy.
Conclusions:
- Dual STAT3/STAT5 inhibition represents a promising therapeutic avenue for T-PLL.
- Combination strategies, particularly with hypomethylating and BCL2-targeting agents, warrant further clinical investigation for T-PLL treatment.
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