0000000000336159

AUTHOR

Jonathan P. Sleeman

0000-0003-1718-7687

showing 4 related works from this author

The proteasome inhibitor Bortezomib (Velcade) as potential inhibitor of estrogen receptor-positive breast cancer

2015

Around 70% of breast cancers express the estrogen receptor α (ERα) and depend on estrogen for growth, survival and disease progression. The presence of hormone sensitivity is usually associated with a favorable prognosis. Use of adjuvant anti-endocrine therapy has significantly decreased breast cancer mortality in patients with early-stage disease, and anti-endocrine therapy also plays a central role in the treatment of advanced stages. However a subset of hormone receptor-positive breast cancers do not benefit from anti-endocrine therapy, and nearly all hormone receptor-positive metastatic breast cancers ultimately develop resistance to anti-hormonal therapies. Despite new insights into me…

OncologyCancer Researchmedicine.medical_specialtyKinasebusiness.industryBortezomibmedicine.drug_classEstrogen receptormedicine.diseaseBreast cancerOncologyEstrogenInternal medicineProteasome inhibitormedicineskin and connective tissue diseasesbusinessProtein kinase BPI3K/AKT/mTOR pathwaymedicine.drugInternational Journal of Cancer
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RASSF1A inhibits estrogen receptor alpha expression and estrogen-independent signalling: implications for breast cancer development

2012

The Ras association domain family 1 isoform A (RASSF1A) is a tumor suppressor whose inactivation is implicated in the development of many human cancers, including breast carcinomas. Little is known about the tumor-suppressive function of RASSF1A in breast tissue and whether its inactivation is mechanistically involved in the initiation and progression of breast tumors. Here, we show that RASSF1A inhibits breast cancer growth in vivo, and suppresses estrogen receptor (ERα) expression and function. Reconstitution of RASSF1A in MCF7 cells led to decreased ERα levels and reduced sensitivity to estrogen (E2). Concomitantly, we observed decreased expression of Id1 as well as the E2-responsive gen…

endocrine systemCancer Researchmedicine.medical_specialtyCell SurvivalGene ExpressionEstrogen receptorApoptosisBreast NeoplasmsCell Cycle ProteinsMice SCIDBiologyMiceBreast cancerDownregulation and upregulationMice Inbred NODInternal medicineGeneticsmedicineAnimalsHumansFulvestrantMolecular BiologyCellular SenescenceCell ProliferationRegulation of gene expressionEstradiolFulvestrantTumor Suppressor ProteinsEstrogen AntagonistsEstrogen Receptor alphaCancerEstrogensCell Cycle Checkpointsmedicine.diseaseGene Expression Regulation NeoplasticEndocrinologyProteolysisMCF-7 CellsCancer researchFemaleEctopic expressionEstrogen receptor alphaNeoplasm TransplantationSignal Transductionmedicine.drugOncogene
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Severe metabolic alterations in liver cancer lead to ERK pathway activation and drug resistance

2020

Background: The extracellular signal-regulated kinase (ERK) pathway regulates cell growth, and is hyper-activated and associated with drug resistance in hepatocellular carcinoma (HCC). Metabolic pathways are profoundly dysregulated in HCC. Whether an altered metabolic state is linked to activated ERK pathway and drug response in HCC is unaddressed. Methods: We deprived HCC cells of glutamine to induce metabolic alterations and performed various assays, including metabolomics (with 13C-glucose isotope tracing), microarray analysis, and cell proliferation assays. Glutamine-deprived cells were also treated with kinase inhibitors (e.g. Sorafenib, Erlotinib, U0126 amongst other MEK inhibitors). …

Life sciences; biology0301 basic medicineSorafenibMAPK/ERK pathwayCarcinoma HepatocellularResearch paperMAP Kinase Signaling SystemGlutamineProliferationlcsh:MedicineAntineoplastic AgentsGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences0302 clinical medicineDownregulation and upregulationddc:570medicineSerineHumansHCCProtein Kinase InhibitorsCell Proliferationlcsh:R5-920Cell growthChemistryKinaseMicroarray analysis techniquesLiver Neoplasmslcsh:RGeneral MedicineHep G2 Cellsdigestive system diseasesMetabolic pathway030104 developmental biologyAnaerobic glycolysisDrug Resistance NeoplasmKinase inhibitors030220 oncology & carcinogenesisCancer researchMetabolomeMetabolic stateAerobic glycolysisTranscriptomelcsh:Medicine (General)medicine.drugEBioMedicine
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Functional characterization of circulating tumor cells (CTCs) from metastatic ER+/HER2− breast cancer reveals dependence on HER2 and FOXM1 for endocr…

2021

Simple Summary Acquired endocrine resistance and late recurrence in patients with ER+/HER2− breast cancer are complex and not fully understood. Here, we evaluated mechanisms of acquired resistance in circulating tumor cells (CTCs) from an ER+/HER2− breast cancer patient who initially responded but later progressed under endocrine treatment. We found a switch from ERα-dependent to HER2-dependent and ERα-independent expression of FOXM1, which may enable disseminated ER+/HER2− cells to re-initiate tumor cell growth and metastasis formation in the presence of endocrine treatment. We found that NFkB signaling sustains HER2 and FOXM1 expression in CTCs in the presence of ERα inhibitors suggesting…

0301 basic medicineDrugLife sciences; biologyCancer Researchmedia_common.quotation_subjectTumor cellslcsh:RC254-282Article03 medical and health sciencesTherapeutic approach0302 clinical medicineCirculating tumor cellBreast cancerHER2-dependent FOXM1 expressionddc:570ER+/HER2− circulating tumor cellsMedicineEndocrine systemskin and connective tissue diseasesmedia_commonER+/HER2��� circulating tumor cellsbusiness.industryendocrine therapy resistancelcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensmedicine.disease030104 developmental biologyOncologyApoptosis030220 oncology & carcinogenesisFOXM1Cancer researchbusiness
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