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Sasaki, I.

Publications and source records attributed to Sasaki, I..

3 recordsLinked to original sources

Hypomorphic Lig4 gene mutation in mice predisposes to Th1-skewing intestinal inflammation

Dysregulation of DNA double-strand break (DSB) repair leads to adaptive immunodeficiency, whereas the remaining lymphocytes are aberrantly activated and provoke inflammations. However, no model mice were available to consistently manifest inflammation under defective DSB repair. We generated mutant mice carrying a missense mutation p.W447C in the gene encoding DNA ligase IV (LIG4), critical for DSB repair. Lig4W447C/W447C mice showed growth retardation and severe intestinal inflammations under adaptive immunodeficiency. The inflammations were featured by marked infiltration of T helper type 1 (Th1) cells and macrophages and was dependent on lymphocytes. When Ifng was deleted, Th2 and Th17 instead of Th1 cells drove the inflammations. Lig4W447C/W447C mice showed expansion of oligoclonal T cells with T cell receptor repertoire skewed towards more proximal 3 V and 5 J gene segments. Thus, our novel hypomorphic Lig4 mutant mice show that defective DSB repair leads to Th1-dependent intestinal inflammations under severe adaptive immunodeficiency.

immunology↗

Immunological characterization of peritoneal exudate cells in liver cirrhosis patients

BACKGROUND AND AIMSLiver cirrhosis (LC) is the end stage of liver fibrosis caused by various chronic liver diseases. Patients with LC often develop ascites containing peritoneal exudate cells (PECs). However, those cells have not been fully immunologically characterized. In this study, we clarify immune cell profiles of PECs from patients with LC. APPROACH AND RESULTSPECs were collected from patients with LC or patients receiving continuous ambulatory peritoneal dialysis (CAPD) as a non-cirrhotic control and subjected to single-cell RNA sequencing (scRNA-seq), bulk RNA sequencing (RNA-seq) and flowcytometry analyses. Analysis of scRNA-seq revealed that dendritic cells (DCs) and macrophages were major populations in CAPD patient-derived PECs, while those cells were decreased and T cells were most abundant in LC patient-derived PECs. Notably, FCGR3A-expressing macrophages were dominant over DCs and GATA6-expressing macrophages in LC patient-derived PECs. Bulk RNA-seq analysis further clarified expression of a set of genes was up- or down-regulated along with LC severity. Especially, expression of T cell signature genes was featured by its increase at Child-Pugh class B, but decrease at Child-Pugh class C. Flowcytometry analysis showed increase of T cells, decrease of DCs and macrophages, and increased expression of CD16 and CD163 in CD1cintCD14high cells corresponding to FCGR3A-expressing macrophages in LC patient-derived PECs. CONCLUSIONSIn LC patient-derived PECs, myeloid and T cell populations and their gene expression profiles were fluctuated with severity. Our findings should contribute to further development of diagnosis or therapeutic maneuver for LC.

immunology↗

A stress sensor IRE1α is required for bacterial exotoxin-induced inflammasome activation in tissue-resident macrophages

Cholera toxin (CT), a bacterial exotoxin composed of one A subunit (CTA) and five B subunits (CTB), functions as an immune adjuvant. CTB can induce production of interleukin-1{beta} (IL-1{beta}), a proinflammatory cytokine, in synergy with a lipopolysaccharide (LPS), from resident peritoneal macrophages (RPMs) through the pyrin and NLRP3 inflammasomes. However, how CTB or CT activates these inflammasomes in the macrophages has been unclear. Here, we clarified the roles of IRE1, an endoplasmic reticulum (ER) stress sensor, in CT-induced IL-1{beta} production from RPMs. In RPMs, CTB is incorporated into ER and induced ER stress responses, depending on GM1, a cell membrane ganglioside. IRE1-deficient RPMs showed a significant impairment of CT- or CTB-induced IL-1{beta} production, indicating that IRE1 was required for CT- or CTB-induced IL-1{beta} production from RPMs. This study first demonstrates the critical roles of IRE1 in activation of both NLRP3 and pyrin inflammasomes in tissue-resident macrophages. One sentence summaryIRE1 is required for NLRP3 and pyrin-mediated IL-1{beta} production

immunology↗