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Lior, C.

Publications and source records attributed to Lior, C..

2 recordsLinked to original sources

Mapping the tumor stress network reveals dynamic shifts in the stromal oxidative stress response

The tumor microenvironment (TME) is a challenging environment where cells must cope with stressful conditions such as fluctuating pH levels, hypoxia, and free radicals. In response, stress pathways are activated, which can both promote and inhibit tumorigenesis. In this study, we set out to characterize the stress response landscape across four carcinomas: breast, pancreas, ovary, and prostate tumors, focusing on five pathways: Heat shock response, oxidative stress response, unfolded protein response, hypoxia stress response, and DNA damage response. Using a combination of experimental and computational methods, we create an atlas of the stress response landscape across various types of carcinomas. We find that stress responses are heterogeneously activated in the TME, and highly activated near cancer cells. Focusing on the non-immune stroma we find, across tumor types, that NRF2 and the oxidative stress response are distinctly activated in immune-regulatory cancer-associated fibroblasts and in a unique subset of cancer associated pericytes. Our study thus provides an interactome of stress responses in cancer, offering new ways to intersect survival pathways within the tumor, and advance cancer therapy.

cancer biology↗

Loss of EIF4G2 Mediates Aggressiveness in Distinct Human Endometrial Cancer Subpopulations with Poorer Survival Outcome in Patients

The non-canonical translation initiation factor EIF4G2 plays essential roles in embryonic development and differentiation, and contributes to the cellular stress response via translation of selective mRNA cohorts. Currently there is limited and conflicting information regarding the potential involvement of EIF4G2 in cancer development and progression. Endometrial cancer (EC) is the most pervasive gynecological cancer in the developed world, with increasing incidence every year. High grade ECs are largely refractory to conventional treatments, presenting poor survival rates and lacking suitable prognostic markers. Here we assayed a cohort of 280 EC patients across different types, grades, and stages, and found that low EIF4G2 expression highly correlated with poor overall and recurrence free survival in Grade 2 EC patients, monitored over a period of up to 12 years. To establish a causative connection between low EIF4G2 expression and cancer progression, we analyzed in parallel two independent human EC cell lines and demonstrated that stable EIF4G2 knock-down resulted in increased resistance to conventional therapies. Depletion of EIF4G2 also increased the prevalence of molecular markers for aggressive cell subsets, and altered their transcriptional and proteomic landscapes. Prominent among the proteins with decreased abundance were Kinesin-1 motor proteins KIF5B and KLC1, 2, 3. Multiplexed imaging of the tumors from this EC patient cohort showed a correlation between decreased protein expression of either KIF5B or KLC1, and poor survival in patients of certain grades and stages. The findings herein reveal potential novel biomarkers for Grade 2 EC with potential ramifications for patient stratification and therapeutic interventions. SignificanceDecreased EIF4G2 protein results in increased drug resistance of aggressive sub-populations of endometrial cancer cells, is associated with poor patient survival, and may serve as a novel prognosis marker for endometrial cancer.

cancer biology↗