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Gerdes, H.

Publications and source records attributed to Gerdes, H..

2 recordsLinked to original sources

High levels of DNA replication initiation factors indicate ATR inhibitor sensitivity via excessive origin firing

Inhibitors of ATR, a central kinase controlling DNA replication origin firing and cellular checkpoint activity, are currently in multiple clinical trials, yet mechanisms underpinning sensitivity and robust patient stratification biomarkers are lacking. We used functional genomics approaches to identify molecular mechanisms driving sensitivity to the ATR inhibitor (ATRi) ceralasertib. Replication stress-associated patterns of DNA copy number alterations identified a subset of sensitive breast cancer cell lines. In parallel, we performed proteomics, phosphoproteomics and gene expression analyses and discovered that sensitive cell lines had higher expression of DNA replication origin firing factors, and massively increased origin firing in response to ATRi. ATRi sensitivity was partly rescued upon co-treatment with XL-413, a CDC7 inhibitor that decreases origin firing. High expression of replication initiation factors correlated with ATRi sensitivity across multiple cancer types, and in acute myeloid leukemia patient samples. Together, this study reveals a novel contribution of lethal origin firing capacity in determining the sensitivity of cancer cells to ATR inhibition and demonstrates the predictive potential of mechanism-specific copy number alterations, providing key steps towards developing a multimodal clinically applicable biomarker for ATR inhibitors.

cancer biology↗

NAMPT activity plays a key role in driving autoimmune processes that characterize type 1 diabetes development in mice

Type 1 diabetes (T1D) is characterised by destruction of pancreatic beta cells by islet-infiltrating cytotoxic lymphocytes, and elevated intra-islet secretion of pro-inflammatory cytokines. However, the underlying pathophysiological mechanisms remain incompletely understood. We hypothesised that abnormal elevation of islet NAD, via activation of NAMPT, plays a key role in driving islet autoimmune processes in T1D. Here, we report that NAMPT inhibition protects against pro-inflammatory cytokine (IL-1{beta}, TNF and IFN{gamma}) mediated beta-cell dysfunction and apoptosis in isolated mouse and human islets. RNAseq revealed that NAMPT inhibition blocked cytokine-mediated gene expression linked to pro-inflammatory responses and leukocyte migration. In vivo, diabetes was induced in CD1 mice via multiple low dose streptozotocin (MLDS) injection. MLDS mice were administered the NAMPT inhibitor FK866 (10 mg/kg; IP) or saline equivalent for 16 days. These experiments demonstrated that NAMPT inhibition improved glycaemic control and beta-cell function and insulin content in MLDS mice. FK866 also reduced proportions of islet-residing TNF-producing CD4+T-cells and F4/80+macrophages, proliferation of spleen-derived CD4+ and CD8+T-cells, and proliferation of islet-derived CD4+T-cells and F4/80+macrophages. Finally, we report that NAMPT inhibition was able to block pro-inflammatory cytokine-mediated migration of cytotoxic CD8+T-cells into isolated islets, using an in vitro transwell platform. This data supports a key immunomodulatory role for NAMPT in islet autoimmunity. NAMPT inhibition may represent a novel therapeutic approach for T1D. The effects of increased NAD levels on islet inflammation require in-depth characterisation, and caution should be exercised with regard to use of NAD boosting supplements, particularly in individuals at risk of developing T1D.

cell biology↗