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Poojary, S.

Publications and source records attributed to Poojary, S..

2 recordsLinked to original sources

Gain-of-function mutation in SKAP2 leads to type 1 diabetes and broader autoimmunity through hyperactive integrin signaling in myeloid cells

Many genetic variants associated with increased type 1 diabetes (T1D) risk are located within the SKAP2 gene; however, the mechanisms by which these variants confer disease risk remain unclear. SKAP2 encodes an adapter protein that functions within the integrin signaling pathway and is found at the highest levels in myeloid leukocytes. We recently identified a de novo gain-of-function SKAP2 mutation in an individual with T1D, leading to hyperactive integrin signaling in myeloid cells. To dissect the mechanisms by which this mutation may lead to T1D, we generated a knock-in mouse line containing the orthologous p.G153R substitution in mouse SKAP2 on the diabetes-prone nonobese diabetic (NOD) genetic background. Both female and male SKAP2G153R/G153R mice developed accelerated T1D. The SKAP2G153R/G153R mice also exhibited a unique spectrum of autoantibodies, leading to immune-complex nephritis. Accelerated infiltration of pancreatic islets by myeloid cells, B lymphocytes, and activated T cells was observed in SKAP2G153R/G153R mice. Single-cell RNA sequencing demonstrated a type 1 IFN{gamma}-driven inflammatory program within the pancreatic islets of SKAP2G153R/G153R mice. Dendritic cells from SKAP2G153R/G153R mice demonstrated increased antigen-presenting capacity, characterized by enhanced adhesion to T cells during immune synapse formation. Macrophages and neutrophils from SKAP2G153R/G153R mice also showed increased integrin signaling responses, with neutrophils expressing high levels of activated {beta}2 integrins on the cell surface. When backcrossed onto the C57BL/6J genetic background, the SKAP2G153R/G153R mice developed spontaneous autoantibody formation and exhibited accelerated autoimmunity, including nephritis, in the pristane-induced model of autoimmune disease. These findings demonstrate that dysregulation of leukocyte integrin signaling, through alterations in SKAP2, may increase the genetic risk for autoimmunity and T1D.

immunology↗

Identification of novel exosomal miRNAs and their role in diagnosis and prognosis of Triple Negative Breast Cancer

Triple-negative breast cancer (TNBC) is a clinically aggressive subtype with poor prognosis and limited treatment options. Exosomal microRNAs (miRNAs), encapsulated within secretory vesicles, have emerged as promising biomarkers for cancer detection and monitoring. In this study, we identify five novel exosomal miRNAs--hsa-miR-6803, hsa-miR-1180, hsa-miR-4728, hsa-miR-1915, and hsa-miR-940--that are consistently overexpressed in TNBC cells, stem-like subpopulations, and patient tumor tissues. Integrated analysis of public datasets and in vitro validation revealed that elevated expression of these miRNAs correlates with poor overall survival. Functional assays demonstrated that miR-1180 and miR-4728 significantly promote TNBC cell migration and invasion. These miRNAs also target critical oncogenic pathways, including Wnt, Notch, and EGFR. Their enrichment in exosomes highlights their translational potential as liquid biopsy-based biomarkers and therapeutic targets. This work is the first to link this miRNA panel to both TNBC tumorigenesis and stem-like cell biology, offering new insights into disease progression and potential strategies for personalized care.

cancer biology↗