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Hur, H.

Publications and source records attributed to Hur, H..

2 recordsLinked to original sources

Spatial dissection of cellular heterogeneity and functional crosstalk in the tumor microenvironments of gastric cancers

Spatial transcriptomics offers unprecedented challenges in characterizing tumor ecosystems, encompassing tumor cells and their surrounding tumor microenvironments (TME) along with cellular interactions therein. Here, we conducted Visium-based spatial transcriptomics on nine primary gastric cancers (GC) to translate the spatial organization of GC ecosystems into the functional landscape of cellular crosstalk across malignant, stromal and immune cells. We identified three distinct GC subtypes of 3 immunogenic, 3 epithelial and 3 stromal GCs with elevated infiltration of immune, malignant cells and fibroblasts reflecting the heterogeneity of the cell types and their interactions in GC TME. GC spatial architecture was further delineated into 6 regional compartments with varying degree of TME infiltration, among which the fibroblast-enriched TME was associated with the upregulation of epithelial-to-mesenchymal transformation (EMT) and immune response in malignant and immune cells, respectively. Cell type-specific transcriptional dynamics representing cellular crosstalk between TME cells were further identified, e.g., the infiltration of malignant and endothelial cells promote the cellular proliferations of TME cells whereas the fibroblasts and immune cells are associated with pro-cancer and anti-cancer immunity, respectively. Ligand-receptor analysis further revealed that CCL2-expressing fibroblasts promote the pro-cancer signaling of immune cells including JAK-STAT3 signaling and inflammatory response in tumor-infiltration macrophages. The CCL2+fibroblasts and macrophages with activated JAK-STAT3 signals are co-localized in spatial GC architecture and their co-abundance was associated with unfavorable clinical outcomes. Taken together, GC spatial transcriptomes can be regionally and functionally delineated into functional cellular crosstalk involving multiple cell types with potential clinical relevance, particularly the interaction between CCL2+ fibroblasts and JAK-STAT3+macrophages contributing to cancer-favoring immune contexture in GC TME.

cancer biology↗

Nuclear hormone receptors promote gut and glia detoxifying enzyme induction and protect C. elegans from the mold P. brevicompactum

Animals encounter microorganisms in their habitats, adapting physiology and behavior accordingly. The nematode Caenorhabditis elegans is found in microbe-rich environments; however, its responses to fungi are not extensively studied. Here we describe interactions of C. elegans and Penicillium brevicompactum, an ecologically-relevant mold. Transcriptome studies reveal that co-culture upregulates stress-response genes, including xenobiotic metabolizing enzymes (XMEs), in C. elegans intestine and AMsh glial cells. The nuclear hormone receptors (NHR) NHR-45 and NHR-156 are key induction regulators, and mutants that cannot induce XMEs in the intestine when exposed to P. brevicompactum experience mitochondrial stress and exhibit developmental defects. Different C. elegans wild isolates harbor sequence polymorphisms in nhr-156, resulting in phenotypic diversity in AMsh glia responses to microbe exposure. We propose that P. brevicompactum mitochondria-targeting mycotoxins are deactivated by intestinal detoxification, allowing tolerance to moldy environments. Our studies support the idea that C. elegans NHR gene expansion/diversification underlies adaptation to microbial environments.

cell biology↗