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Hadzic, A.

Publications and source records attributed to Hadzic, A..

2 recordsLinked to original sources

Alternative lengthening of telomeres stratifies complex karyotype sarcomas into distinct genomic and transcriptomic states

Complex karyotype sarcomas (CKS) are heterogeneous mesenchymal malignancies that typically lack recurrent actionable oncogenic drivers and remain therapeutically challenging. Loss of ATRX is a recurrent feature of CKS and defines a particularly high-risk subgroup. ATRX loss is also associated with activation of the alternative lengthening of telomeres (ALT) pathway, and ALT-positive sarcomas have been linked to poor clinical outcomes. However, the molecular underpinnings underlying ALT-status-dependent differences in CKS, as well as the therapeutic vulnerabilities associated with ALT, remain poorly defined. By integrating C-circle-based ALT detection across 776 sarcoma samples with multi-modal sequencing of five CKS subtypes, we find that ALT activity is associated with enriched hallmarks of genomic instability. ALT-positive transcriptomes are dominated by a coordinated DNA damage response and mitotic program, in contrast to oncogenic signaling pathways that drive TERT activation in ALT-negative tumors. Long-read sequencing reveals telomere repeat clusters and telomere-mediated healing at structural breakpoints in ALT-positive tumors. These events also occur on extrachromosomal DNA (ecDNA), linking ALT activity to ecDNA biology. Together, our findings position ALT status as an important stratifying feature of CKS and identify ALT-associated transcriptional programs as potential therapeutic targets.

cancer biology↗

L-Asparaginase treatment induces reversible immunoregulatory and immunosuppressive effects in non-malignant B cells in a model of T-cell dependent B cell activation

Metabolic reprogramming is critical for immune cell adaptation upon activation to exert full functionality with amino acids being a key metabolic factor. While L-asparagine is a non- essential amino acid it turns out to be conditionally essential in malignant B cells due to defective asparagine synthetase making L-asparaginase a commonly used chemotherapeutic agent. Off-target enzymatic activity including glutaminolysis impacting crucial immune function. However, its effects on healthy B cells remain unclear, therefore in this study, we explored how L-asparaginase modulates the biology and function of CD40-activated B cells, using an in-vitro model. B cells from healthy donors were treated with increasing L- asparaginase concentrations and analyzed for proliferation, immune phenotype, and metabolic changes. Results showed L-asparaginase reduced B cell proliferation and homotypic clustering without inducing apoptosis, instead impairing metabolic pathways, lowering glycolysis and oxidative phosphorylation, and reducing surface markers associated with antigen-presenting cell (APC) function. Functional assays confirmed that L-asparaginase- treated B cells had diminished ability to activate T cells. Supplementing with asparagine or glutamine restored B cell proliferation and function, with glutamine slightly more effective than asparagine. Interestingly, L-asparaginase induced a regulatory B cell phenotype, marked by CD24+CD38+CD27+ expression and increased interleukin-10 and TGF-beta, suggesting a potential immunosuppressive mechanism. These findings indicate that L-asparaginase not only affects malignant cells but also impacts the function of non-malignant B cells, proposing potential therapeutic applications in B cell-driven autoimmune disorders. Further studies are needed to explore its effects at lower, clinically relevant concentrations. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=132 SRC="FIGDIR/small/625617v1_ufig1.gif" ALT="Figure 1"> View larger version (19K): org.highwire.dtl.DTLVardef@1ae8d10org.highwire.dtl.DTLVardef@af405borg.highwire.dtl.DTLVardef@1aa4c0eorg.highwire.dtl.DTLVardef@16750ea_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗