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Hamroune, J.

Publications and source records attributed to Hamroune, J..

2 recordsLinked to original sources

The epigenomic landscape of bronchial epithelial cells reveals the establishment of trained immunity

BackgroundInnate immune memory, also called trained immunity, refers to the ability of innate immune cells to gain memory characteristics after transient stimulation, resulting in a nonspecific modified inflammatory response upon secondary remote challenge. Bronchial epithelial cells (BECs) participate in innate immune defence and are the first cells of the lower respiratory tract to encounter inhaled pathogens. We recently showed that BECs are capable of innate immune memory after preexposure to Pseudomonas aeruginosa flagellin through epigenetic mechanisms. In the present study, we investigated such mechanisms through the modification of chromatin architecture induced by flagellin preexposure that results in subsequent changes of gene expression. ResultsBy conducting an unsupervised approach to jointly analyse chromatin accessibility and gene expression, we mapped the remodelling of the epigenomic and transcriptomic profiles during the establishment of BECs memory. We identified a Memory regulatory profile induced by flagellin exposure. It includes clusters of upregulated genes related to inflammation that are linked to a sustainable gain in chromatin accessibility and with an increased activity of specific factors (TFs) whose binding may drive this process. ConclusionsIn summary, we demonstrated that flagellin exposure induced changes in chromatin condensation in BECs, which sustains the reprogramming of transcriptional patterns

genetics↗

The super-enhancer landscape reflects molecular subgroups of adrenocortical carcinoma

Adrenocortical carcinoma (ACC) is a rare cancer of the adrenal gland with generally very unfavourable outcome. Two molecular subgroups, C1A and C1B, have been previously identified with a significant association with patient survival. In this work, we study chromatin state organization characterized by histone modifications using ChIP-sequencing in adult ACC. We describe the super-enhancer landscape of ACC, characterized by H3K27ac, and identify super-enhancer regulated genes that play a significant role in tumorigenesis. We show that the super-enhancer landscape reflects differences between the molecular sub-groups C1A and C1B and identify networks of master transcription factors mirroring these differences. Additionally, we study the effects of molecules THZ1 and JQ1 previously reported to affect super-enhancer-driven gene expression in ACC cell lines. Our results reveal that the landscape of histone modifications in ACC is linked to its molecular subgroups and thus provide the groundwork for future analysis of epigenetic reprogramming in ACC.

cancer biology↗