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Search Results to John M. Perry

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research overview Dr. Perry's studies stem cells, cancer, immunology, and experimental therapeutics. While these seem like disparate fields, the lab has found surprising connections between them. Regarding stem cells, they study how normal blood-forming (hematopoietic) stem cells expand by making more of themselves, a process called self-renewal. They found that self-renewal was guided by the simultaneous activation of two genetic signaling pathways, Wnt/beta-catenin and PI3K/Akt. Pharmacological activation of these pathways drives the expansion of HSCs in culture, which are expected to be useful for therapy. In studying self-renewal, they made a mouse model that permanently activated the genetic pathways mentioned above by mutation. This resulted in the development of leukemia stem cells (LSCs), which are resistant to therapy and cause relapse. Since LSCs are particularly reliant on the interaction between Akt and beta-catenin, they did a high-throughput drug screen to discover inhibitors of this interaction. Surprisingly, a long-used chemotherapy drug, doxorubicin, would inhibit this interaction at very low doses. So, they repurposed doxorubicin as a targeted therapy against LSCs rather than a broadly toxic drug. By investigating the mechanism underlying doxorubicin's ability to target LSCs, they found that low-dose but not high-dose doxorubicin activated anti-cancer immunity. They are currently studying the details of this process and how they might 'immunize' pediatric patients against cancer relapse.

One or more keywords matched the following items that are connected to Perry, John

Item TypeName
Concept Calcium-Binding Proteins
Concept Heat-Shock Proteins
Concept Nerve Tissue Proteins
Concept Nuclear Proteins
Concept Protein Binding
Concept Tumor Suppressor Protein p53
Concept RNA-Binding Proteins
Concept Homeodomain Proteins
Concept Cell Cycle Proteins
Concept Proto-Oncogene Proteins c-kit
Concept Intercellular Signaling Peptides and Proteins
Concept Ubiquitin-Protein Ligases
Concept F-Box Proteins
Concept Proto-Oncogene Proteins c-akt
Concept Wnt Proteins
Academic Article Retinoid-Sensitive Epigenetic Regulation of the Hoxb Cluster Maintains Normal Hematopoiesis and Inhibits Leukemogenesis.
Academic Article Cooperation between both Wnt/{beta}-catenin and PTEN/PI3K/Akt signaling promotes primitive hematopoietic stem cell self-renewal and expansion.
Academic Article Isolation and characterization of intestinal stem cells based on surface marker combinations and colony-formation assay.
Academic Article The Dlk1-Gtl2 Locus Preserves LT-HSC Function by Inhibiting the PI3K-mTOR Pathway to Restrict Mitochondrial Metabolism.
Academic Article Suppression of m6A reader Ythdf2 promotes hematopoietic stem cell expansion.
Academic Article N-cadherin expression level distinguishes reserved versus primed states of hematopoietic stem cells.
Academic Article Self-renewal versus transformation: Fbxw7 deletion leads to stem cell activation and leukemogenesis.
Grant Overcoming therapeutic resistance by repurposing a classic chemotherapeutic drug as a targeted therapy to reactivate anti-cancer immunity
Academic Article Overcoming Wnt-?-catenin dependent anticancer therapy resistance in leukaemia stem cells.
Academic Article ?-Catenin and Associated Proteins Regulate Lineage Differentiation in Ground State Mouse Embryonic Stem Cells.
Grant Harnessing anti-cancer immunity to vaccinate against treatment failure and relapse
Academic Article An optimized chromatin immunoprecipitation protocol using Staph-seq for analyzing genome-wide protein-DNA interactions.

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