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Chalkiadakis, T.

Publications and source records attributed to Chalkiadakis, T..

3 recordsLinked to original sources

Massively parallel characterization and predictive modelling of neuronal regulatory variation

Disease-associated variants reside frequently in noncoding cis-regulatory elements (CREs), yet their functional consequences remain poorly understood. We performed a large-scale lentiMPRA in human excitatory neurons, quantifying the impact of >46,000 naturally occurring variants across >27,000 candidate CREs near 524 disease-associated genes. These data improved regulatory variant effect predictions beyond state-of-the-art models. Significant allelic effects occurred at comparable rates across common, rare, and singleton variants, demonstrating that, within MPRA-measurable effects, population frequency carries limited information about per-variant regulatory impact. Variant effect detectability and magnitude were governed primarily by baseline activity of the enclosing regulatory element and local sequence context. Regulatory effects were distributed across numerous transcription factors rather than concentrated in master regulators, consistent with a combinatorial enhancer architecture. We establish a large-scale functional variant catalog and provide a complementary benchmark and resource for developing and evaluating models of noncoding regulatory variation.

genetics↗

Site-dependent Treg cell transcriptional reprograming in a metastatic colorectal cancer model holds prognostic significance

In colorectal cancer (CRC), tumor-infiltrating regulatory T (Treg) cells suppress anti-tumor immunity, promoting immune evasion and tumor progression. Effective therapies require selectively targeting tumor-infiltrating Treg (TI-Treg) cells while preserving systemic Treg cells, necessitating insight into their adaptations within the tumor microenvironment. Here, CRC-organoids were implanted in the liver of Foxp3eGFP mice to investigate location-specific phenotypic differences in TI-Treg cells. Tumor tissue exhibited an increased proportion of Treg cells and a decrease of effector CD4 and CD8 T cells compared to matched healthy tissue. RNA sequencing of Treg cells isolated from the spleen, primary liver tumor transplant, or metastases identified gene expression profiles previously associated with CRC-related Treg cells in patients. Location-specific differences included elevated expression of WNT-pathway genes in peritoneal TI-Treg cells compared to liver counterparts. Higher expression of genes upregulated in liver TI-Treg cells correlated with poor CRC prognosis. Splenic Treg cells from tumor-bearing mice displayed distinct transcriptional profiles from both their healthy counterparts and TI-Treg cells, suggesting they represent a distinct CD4+ population. Taken together, these findings highlight TI-Treg cells heterogeneity across different tumor sites and the distinct nature of splenic Treg cells in tumor-bearing hosts.

immunology↗

Glycolytic reprogramming shapes the epigenetic landscape of activated CD4+ T Cells in Juvenile Idiopathic Arthritis

Juvenile Idiopathic Arthritis (JIA) describes a heterogeneous group of autoimmune conditions with an unknown cause and childhood onset. It is characterized by the accumulation of mononuclear cells, notably activated CD4+ memory/effector T (Tmem/Teff) cells, within the synovial fluid of affected joints. JIA CD4+ T cells exhibit a unique epigenomic signature linked to inflammation, however, the molecular mechanisms driving this remain unclear. Here we show that CD4+ T cells isolated from JIA synovial fluid (SF) exhibit abnormal intracellular metabolism marked by heightened glycolysis after activation driving transcriptional reprogramming. Epigenetic profiling between activated healthy controls and JIA patients allowed the definition of specific disease-related enhancers upregulated in SF-derived JIA CD4+ T cells. Pharmacological inhibition of glycolytic flux affected the expression of genes associated with these enhancers. When activated in the presence of JIA SF, CD4+ T cells obtained from healthy control (HC) subjects, displayed heightened glycolytic activity compared to paired plasma. Moreover, this also led to increased H3K27ac at JIA-specific genes. Increased H3K27ac was dependent on glycolytic flux, but not oxidative phosphorylation. Inhibition of glycolysis also specifically affected the transcription of genes upregulated during T cell activation in the presence of SF. Inhibiting the glycolytic enzyme pyruvate dehydrogenase (PDH) reduced JIA-associated gene expression. Taken together, these findings demonstrate that for JIA, the inflammatory microenvironment can modulate T cell activation-driven transcriptional programs through a glycolysis-mediated pathway. Specific targeting of this T cell metabolism-epigenetic axis may provide avenues for intervention during the development of autoinflammatory disease.

immunology↗