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Di Napoli, A.

Publications and source records attributed to Di Napoli, A..

2 recordsLinked to original sources

DNA damage response at telomeres boosts the transcription of SARS-CoV-2 receptor ACE2 during aging

The severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection is known to be more common in the elderly, who show also more severe symptoms and a higher risk of hospitalization and death. Here we show that the expression of the Angiotensin Converting Enzyme 2 (ACE2), the SARS-CoV2 cell receptor, increases during aging in mouse and human lungs, and following telomere shortening or dysfunction in mammalian cells and in mouse models. This increase is regulated at the transcription level, and Ace2 promoter activity is DNA damage response (DDR)-dependent. Indeed, ATM inhibition or the selective inhibition of telomeric DDR, through the use of antisense oligonucleotides, prevents Ace2 upregulation following telomere damage, in cultured cells and in mice. We propose that during aging telomeric shortening, by triggering DDR activation, causes the upregulation of ACE2, the SARS-CoV2 cell receptor, thus making the elderly likely more susceptible to the infection.

cell biology

Intra-tumor heterogeneity of Diffuse Large B-cell Lymphoma involves the induction of diversified stroma-tumor interfaces

Intra-tumor heterogeneity in lymphoid malignancies is articulated around several fundamentals, encompassing selection of genetic subclonal events and epigenetic regulation of transcriptional programs. Clonally-related neoplastic cell populations are unsteadily subjected to immune editing and metabolic adaptations within different tissue microenvironments. How tissue-intrinsic mesenchymal determinants impact on the diversification of aggressive lymphomas is still unknown. In this study we adopted the established A20 line-based model of Diffuse Large B-cell Lymphoma (DLBCL), to investigate the intra-tumor heterogeneity associated with the infiltration of different tissue microenvironments and the specific mesenchymal modifications that characterize stromal adaptation to lymphoma seeding. Combining in situ quantitative immunophenotypical analyses and RNA sequencing, we found that the tissue microenvironment casts a relevant influence over A20 transcriptional landscape also impacting on Myc and DNA damage response programs. Extending the investigation to mice deficient for the matricellular protein Sparc, a stromal determinant endowed with a strong prognostic significance in human DLBCL, we demonstrated a different immune imprint on A20 cells related to stromal Sparc proficiency. The study provides the first evidence of human DLBCL intra-lesional heterogeneity arising from diversified mesenchymal contextures and impacting on MYC expression, advancing the challenge for resolving intra-tumor heterogeneity probing stromal/immune interfaces. KEY POINTSO_LIDiversified stromal adaptations of infiltrated tissues shape DLBCL intra-tumor heterogeneity regulating transcriptional/phenotypic features C_LIO_LIStromal Sparc, which endorses prognostic significance in DLBCL, tunes the immune pressure exerted on lymphoma cells by the microenvironment C_LI

cancer biology