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A, T.

Publications and source records attributed to A, T..

3 recordsLinked to original sources

TIF1γ drives oral cancer recurrence by the transcriptional regulation of self-renewal genes, such as HES1

TIF1{gamma} is an E3 ubiquitin ligase and key mediator of the noncanonical TGF-{beta} signaling pathway. Initially characterized for its developmental functions, TIF1{gamma} is essential for maintaining the pluripotency of adult stem cells, including long-term hematopoietic stem cells. Although TGF-{beta} signaling contributes to cancer progression and recurrence, TIF1{gamma} has traditionally been regarded as a tumor suppressor due to its inhibition of oncogenes involved in epithelial-mesenchymal transition. However, clinical reports have associated high TIF1{gamma} expression at advanced cancer stages with poor prognosis. To elucidate the mechanism underlying this paradox, we identify a previously unrecognized role of TIF1{gamma} in promoting the self-renewal capacity of oral cancer cells, thereby contributing to disease recurrence. Phosphoproteomic profiling of self-renewal-enriched cells revealed activation of a noncanonical TGF-{beta} pathway. Using extreme limiting dilution assays, an ALDH1A1-DsRed2 cancer stem cell reporter, multiple oral cancer cell lines, primary 3D cultures on alginate matrix, and orthotopic mouse models, we demonstrate that TIF1{gamma} depletion significantly reduces self-renewal and prolongs disease-free survival. Immunoprecipitation (IP)-LC/MS/MS analysis identified transcriptional regulators within the TIF1{gamma} interactome, including TRRAP and H2A.Z, which were validated by IP and FRET assays. ChIP and IP studies further revealed that during self-renewal enrichment, TRRAP acetylates H2A.Z, decreasing the chromatin occupancy of its unacetylated form. Acetylated H2A.Z is subsequently recognized by TIF1{gamma}, which monoubiquitinates H2B at promoters of self-renewal genes such as HES1, initiating transcription. In alignment with findings from mouse neocortical development, where a Notch-independent Hes1-expressing (NIHes1) population defines primitive quiescent stem cells, we show that TIF1{gamma} acts as an acetylation reader specifically at the NIHES1 promoter region of HES1. TIF1{gamma} depletion drives NIHES1 cells toward a Notch-dependent HES1 (NDHES1) identity. RNA-seq confirmed reversal of 100 NIHES1-specific genes following TIF1{gamma} loss, along with downregulation of pluripotency-associated genes found in embryonic stem cells, supporting a critical role for TIF1{gamma} in maintaining primitive cancer stem cell states. Consistent with our in vivo findings, primary oral cancer samples showed that increased frequencies of TIF1{gamma}+/TRRAP+/H2A.Z- cells strongly predict recurrence. Given that the histone acetylation-reader function of TIF1{gamma} drives poor prognosis, our findings suggest the TIF1{gamma} bromodomain as a potential therapeutic target requiring further investigation.

cancer biology↗

Effects of Inflammatory Factors on the Migration and Repair of Intestinal Mucosal Cells at Pancreaticojejunostomy Anastomosis: An Experimental Study in Beagle Dogs

ObjectiveTo investigate the effects of inflammatory factors on the migration and repair of intestinal mucosal cells at the site of pancreaticojejunostomy (PJ) anastomosis and to observe the safety and feasibility of PJ with mucosal-priority healing (PM-PJ). Materials and methodsThirty-six Beagle dogs were randomly divided into two groups: the PM-PJ group (n=18) and the control group (n=18), which included classic end-to-side invagination pancreaticojejunostomy (IPJ). Six Beagles were sacrificed on the 7th, 14th, and 21st days after surgery to obtain pancreaticojejunostomy anastomosis tissues. The primary outcomes were postoperative mortality, morbidity, and pathological changes in the anastomosis. The secondary outcomes were the expression levels of the cytokines TGF-{beta}1, IL-10, TNF-, IL-6, collagen, and -SMA. ResultsAll surgeries were successfully performed. In the study group, the incidences of anastomotic leakage and pancreatitis were 0% and 11.1% (2/18), respectively, whereas in the control group, the incidences were 5.6% (1/18) and 16.7% (3/18), respectively. The levels of serum TGF-{beta}1, IL-10, TNF-, and IL-6 were increased at all time points after surgery in both groups, and these increases were more significant at certain time points in the study group. Pathological observation revealed that the degree of anastomotic healing in the study group was greater than that in the control group at all time points. The protein expression levels of collagen I/III and -SMA in the anastomoses of both groups changed over time, and the changes were more significant at certain time points in the study group. ConclusionInflammatory factors play a positive role in the early stage of PJ anastomosis healing by stimulating collagen secretion and synthesis. PM-PJ is a safe and simple surgery with good anastomotic healing and a low incidence of complications.

animal behavior and cognition↗

EPHA2-dependent Ephrin-B1 signaling supports self-renewal ability and recurrence of oral cancer

Eph-Ephrin pathway that drives a bidirectional signaling regulates a plethora of biological activities with its varied level of complexity. While the canonical trans-interaction of the ligand and receptor on neighboring cells initiates forward signaling that brings about biological activities, their cis-interaction on the same cell attenuates the forward signaling, modulating the biological effects. Yet, non-canonical cis-interactions with heterotypic surface proteins and kinases regulate certain biological effects. In cancer, the canonical signaling is believed to be tumor suppressive, while the ligand-independent non-canonical signaling drives tumor progression and poor prognosis. Self-renewal ability of cancer cells is a major underlying cause of recurrence and poor prognosis of cancer. Using SILAC-based proteomics, we identified Ephrin-B1 signaling as a crucial regulator of oral cancer self-renewal. Though Ephrin-B1 is known to regulate normal stem cells, its role in cancer remains underexplored. Our biochemical analyses show that Ephrin-B1 binds to a nonconventional receptor EPHA2, which is known to regulate cancer stem cells (CSCs), though the mechanism is less explored. Contrary to the belief that the cis-interaction of receptors and ligands is a means to block functional signaling, our immunoprecipitation, FRET facilitated photoswitching analysis, proximity ligation assay, and in vitro kinase assay provide evidence for the Ephrin-B1-EPHA2 cis-interaction leading to the phosphorylation of EphrinB1 at Y324/329 and Y317. Extreme limiting dilution assay in vitro and in vivo confirmed that this cis-interaction promotes CSC enrichment. Substantiating our in vitro results, mouse orthotopic models showed that Ephrin-B1/EPHA2 interaction regulates prognosis. The clinical relevance of the finding was validated using a TCGA data set and immunohistochemical analysis of tissue microarray using samples from oral cancer patients with recurrence in comparison to patients, who showed disease-free survival. Given that Ephrin-B interacts with EphB for normal stem cell homeostasis, this unconventional EPHA2/Ephrin-B1 cis-interaction, specifically manifested in CSC niches, might serve as an attractive target for therapy, warranting further validation.

cancer biology↗