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Subudhi, M.

Publications and source records attributed to Subudhi, M..

2 recordsLinked to original sources

Epigenetic Reprogramming of Host Chromatin by the Transforming Parasite Theileria annulata

Theileria annulata, a transforming apicomplexan parasite, extensively reprograms the chromatin architecture of bovine leukocytes to facilitate infection and cellular transformation. To elucidate the underlying epigenetic mechanisms, we characterized the chromatin landscape of infected lymphocytes using integrated proteomic, imaging, and functional assays. Our findings reveal that T. annulata lacks the DNA damage marker {gamma}H2A.X and its associated SQ/TQ motif, indicating an evolutionary divergence from canonical DNA repair signalling pathways. High-resolution profiling of histone post-translational modifications (PTMs) demonstrated distinct nuclear compartmentalization, with host (H3K27me3, H3K9me1/2), parasite-predominant modifications (H3K4me3, H3K18me1, H3K27ac, H3K9ac, and H3K36me3), and shared modifications (e.g., H3K4me1/2, H3K36me2, H4K5/8/12/16ac, H3K9me3 and H4K91Ac) suggesting a coordinated epigenetic strategy driving host cell programs to sustain proliferation and survival. Our study delineates a novel host-parasite epigenetic interface, positioning T. annulata as a unique model of epigenetic parasitism. By bridging parasitology and cancer epigenetics, these findings unveil new therapeutic opportunities targeting chromatin vulnerabilities in parasite-induced transformation. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=106 SRC="FIGDIR/small/684985v1_ufig1.gif" ALT="Figure 1"> View larger version (35K): org.highwire.dtl.DTLVardef@1bd0e05org.highwire.dtl.DTLVardef@e37ea4org.highwire.dtl.DTLVardef@18f78d5org.highwire.dtl.DTLVardef@460eb4_HPS_FORMAT_FIGEXP M_FIG C_FIG

cancer biology↗

Theileria annulata Infection Promotes p53 suppression, Genomic Instability and DNA deaminase APOBEC3H upregulation leading to cancer-like phenotype in host cells

Theileria annulata-infected host leukocytes display cancer-like phenotypes, though the precise mechanism is yet to be fully understood. The occurrence of cancer-like phenotypes in Theileria-infected leukocytes may be attributed to various factors, including genomic instability and acquired mutations, a crucial trait that underpins the genetic foundation of cancer. This paper presents WGS data and bioinformatic analyses to reveal point mutations and large-scale alterations in six clinically relevant T. annulata-infected cell lines. We identified 7867 exon-linked somatic mutations common to all cell lines, and cancer association analysis showed significant accumulation in oncogenes (FLT4, NOTCH2, MAP3K1, DAXX, FCGR2B, ROS1) and tumor suppressor genes (BARD1, KMT2C, GRIN2A, BAP1) implicated in established critical cancer processes. We demonstrated that a crizotinib-induced blockade of the ROS1 oncogenic protein, which harbored the most mutations, led to the death of infected leukocytes. This is consistent with the significant role of ROS1 in parasite-induced leukocyte transformation. In addition, we found somatic mutations in genes involved in genome instability and the DDR pathway. Our findings support the notion that ROS1 and Nutulin 3a are valid targets for intervention, and the suppression of TP53, a crucial tumor suppressor gene, may play a significant role in cell immortalization. We also show that upon infection with the parasite, bovine cells upregulate the expression of APOBEC3H, a DNA mutator likely responsible for the detected mutations. Our study highlights how T. annulata transforms leukocytes to gain selective advantage via mutation, and our observations could steer future research towards a mechanistic understanding of disease pathogenesis.

cell biology↗