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Biology subjects

Mann, E.

Publications and source records attributed to Mann, E..

3 recordsLinked to original sources

Defective base excision repair in the response to DNA damaging agents in triple negative breast cancer

DNA repair defects have been increasingly focused on as therapeutic targets. In hormone positive breast cancer, XRCC1-deficient tumors have been identified and proposed as targets for combination therapies that damage DNA and inhibit DNA repair pathways. XRCC1 is a scaffold protein that functions in base excision repair (BER) by mediating essential interactions between DNA glycosylases, AP endonuclease, poly(ADP-ribose) polymerase 1, DNA polymerase {beta} (POL {beta}), and DNA ligases. Loss of XRCC1 confers BER defects and hypersensitivity to DNA damaging agents. BER defects have not been evaluated in triple negative breast cancer (TNBC), for which new therapeutic targets and therapies are needed. To evaluate the potential of XRCC1 as an indicator of BER defects in TNBC, we examined XRCC1 expression and localization in the TCGA database and in TNBC cell lines. High XRCC1 expression was observed for TNBC tumors in the TCGA database and expression of XRCC1 varied between TNBC cell lines. We also observed changes in XRCC1 subcellular localization in TNBCs that alter the ability to repair base lesions and single-strand breaks. Subcellular localization changes were also observed for POL {beta} that did not correlate with XRCC1 localization. Basal levels of DNA damage were also measured in the TNBC cell lines, and damage levels correlated with observed changes in XRCC1 expression, localization, and repair functions. The results confirmed that XRCC1 expression changes may indicate DNA repair capacity changes but emphasize that basal DNA damage levels along with expression and localization are better indicators of DNA repair defects. Given the observed over-expression of XRCC1 in TNBC preclinical models and the TCGA database, XRCC1 expression levels should be considered when evaluating treatment responses of TNBC preclinical model cells.

cancer biology

Complementary roles for parvalbumin and somatostatin interneurons in the generation of hippocampal gamma oscillations

Gamma-frequency oscillations (30-120 Hz) can be separated into fast (>60 Hz) and slow oscillations, with different roles in neuronal encoding and information transfer. While synaptic inhibition is important for synchronization across the gamma-frequency range, the role of distinct interneuronal subtypes in fast and slow gamma states remains unclear. Here, we used optogenetics to examine the involvement of parvalbumin (PV+) and somatostatin (SST+) expressing interneurons in gamma oscillations in the mouse hippocampal CA3 ex vivo. Disrupting either PV+ or STT+ interneuron activity, via either photo-inhibition or photo-excitation, led to a decrease in the power of cholinergically-induced slow gamma oscillations. Furthermore, photo-excitation of SST+ interneurons induced fast gamma oscillations, which depended on both synaptic excitation and inhibition. Our findings support a critical role for both PV+ and SST+ interneurons in slow hippocampal gamma oscillations, and further suggest that STT+ interneurons are capable of switching the network between slow and fast gamma states.

neuroscience

CD2 expression acts as a quantitative checkpoint for immunological synapse structure and T-cell activation.

The CD2 receptor has been described as an adhesion and costimulatory receptor on T cells. Here, transcriptional profiling of colorectal cancers (CRC) revealed a negative correlation between CD2 expression and \"exhausted CD8+ T-cells\" gene signatures. Furthermore, we detected reduced surface CD2 levels in exhausted CD127lowPD-1hi CD3+CD8+ tumour infiltrating lymphocytes (TILs) in CRC. We describe a CD2 expression-level-dependent switch in CD2-CD58 localization between central and peripheral domains in the immunological synapse (IS). A peripheral \"CD2 corolla\" formed when CD2 surface expression was sufficiently high and its cytoplasmic domain intact. The corolla recruited other ligated receptors like CD28, boosted recruitment of activated Src-family kinases (pSrc), LAT and PLC-{gamma} in the IS and consequently T-cell activation in response to a tumour antigen. Corolla formation and pSrc in the IS increased linearly with CD2 expression, whereas pSrc signals were reduced by high, \"exhausted-like\" levels of PD-1, which invaded the corolla. These results suggest two levels of inhibition of Src-family kinases in CD3+CD8+ TILs: reduced CD2 expression and high PD-1 expression.

immunology