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Ichikawa, K.

Publications and source records attributed to Ichikawa, K..

3 recordsLinked to original sources

Co-stimulatory molecules decide T cell fate through regulations of their invigoration and impairment

T cell invigoration is an essential step for eliminating pathogens and cancer cells. Co-stimulatory molecules, such as CD80, CD86, and ICOSLG reinforce TCR stimuli for T cell activations. Despite identifying multiple co-stimulatory molecules, the differences of those in downstream signaling have remained unclear. Here, we unravel the differences in avidity of co-stimulatory molecules with T cells cause distinct T cell fates. Specially, CD80 + TCR stimulus promotes induction of multiple T cell effector genes based on prolonged and magnified activation of ERK and AKT compared with other combined stimuli. Long-term and robust activation of these signaling pathways leads to T cell impairment by induction of PD1, and exhausted T cells are vulnerable to disrupt effector functions by interactions with PDL1. Collectively, we reveal the quantitative differences in binding activities of co-stimulatory molecules to T cells cause qualitative differences in downstream signals and gene expressions, thereby branching T cell fates.

molecular biology↗

Screening of the optimal CpG-oligodeoxynucleotide for anti-inflammatory responses in avian macrophage cell line HD11

CpG-oligodeoxynucleotides (CpG-ODN) has been shown to possess immunostimulatory features in both mammals and birds. However, compared to its pro-inflammatory effects, little is known about the anti-inflammatory responses triggered by CpG-ODN in avian cells. Hence, in this study, we aimed to characterize the anti-inflammatory response in the chick macrophage cell line HD11 under the stimulation of five kinds of CpG-ODN: CpG-A1585, CpG-AD35, CpG-B1555, CpG-BK3, and CpG-C2395. Single-stimulus CpG-B1555, CpG-BK3, and CpG-C2395 induced the interleukin (IL)-10 expression without causing cellular injury. The effects of pretreatment with each CpG-ODN before subsequent lipopolysaccharide stimulation were also evaluated. Interestingly, only CpG-C2395 maintained a high expression level in this situation. Finally, expression analysis of inflammation-related genes, such as the tumor necrosis factor-, IL-1{beta}, IL-6, and Toll-like receptor 4, was conducted, and pretreatment with CpG-C2395 significantly reduced their expression. Overall, our results shed light on the anti-inflammatory responses triggered by CpG-C2395 stimulation using a comparative analysis of three major classes of CpG-ODN in chick macrophages.

immunology↗

Prediction of sex-determination mechanisms in avian primordial germ cells using RNA-seq analysis

Avian sex is determined by various factors, such as the dosage of DMRT1 and cell-autonomous mechanisms. While the sex-determination mechanism in gonads is well analyzed, the mechanism in germ cells remains unclear. In this study, we explored the gene expression profiles of male and female primordial germ cells (PGCs) during embryogenesis in chickens to predict the mechanism of sex-determination. Male and female PGCs were isolated from blood and gonads with a purity > 96% using flow cytometry and analyzed using RNA-seq. Prior to settlement in the gonads, female circulating PGCs (cPGCs) obtained from blood displayed sex-biased expression. Gonadal PGCs (gPGCs) also displayed sex-biased expression, and the number of female-biased genes detected was higher than male-biased genes. The female-biased genes in gPGCs were enriched in some metabolic processes. To reveal the mechanisms underlying the transcriptional regulation of female-biased genes in gPGCs, we performed stimulation tests. Stimulation with retinoic acid against cultured gPGCs derived from male embryos resulted in the upregulation of several female-biased genes. Overall, our results suggest that sex determination of avian PGCs possess aspects of both cell-autonomous and somatic cell regulation. Moreover, it appears that sex determination occurs earlier in females than in males.

developmental biology↗