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Ochiai, S.

Publications and source records attributed to Ochiai, S..

2 recordsLinked to original sources

IL-2- and IL-4-dependent signaling play separate and sequential roles in the differentiation of GATA3-hi TH2 cells in vivo

Naive CD4+ T cells differentiation into T-helper type 2 (TH2) cells requires Interleukin 2 (IL-2) and IL-4-dependent signaling as well as presentation of allergens by dendritic cells (DCs). The role of IL-2 and IL-4 in TH2 differentiation has been mostly studied in vitro, however, these models do not account for the heterogeneity of TH responses and bypass the DC-derived signals that are necessary in vivo. We used cytokine-blocking antibodies and IL-4RKO/IL-4RWT mixed bone marrow chimeras to show that IL-4 signaling was not required for initial upregulation of GATA3 by CD4+ T cells after intradermal immunization, but was necessary for later TH2 cell expansion and further GATA3 upregulation. Single-cell transcriptomics and computational analyses confirmed that IL-4 signaling was not necessary for TH2 identity but promoted TH2 proliferation and expression of a pathogenic signature. Early IL-2 blockade prevented GATA3 upregulation without affecting TH2 proliferation or the differentiation of TH1 and TFH subsets after immunization. Adoptive transfer experiments showed that reduced competition for IL-4 in vivo drove extensive T cell proliferation and preferential expansion of the GATA3hi population. Overall, our results suggest temporally and functionally distinct roles of IL-2 and IL-4 during TH2 differentiation: IL-2 is necessary for GATA3 upregulation, while IL-4 drives subsequent TH2 proliferation and licensing to effector activity. Therefore, IL-2 and IL-4 act in a co-ordinated manner to respectively promote TH2 differentiation, expansion, and effector commitment in the LN.

immunology↗

The effect of a harmful algal bloom (Karenia selliformis) on the benthic invertebrate community and the sea otter (Enhydra lutris) diet in eastern Hokkaido.

In recent decades, the locally extinct sea otter (Enhydra lutris lutris) has been recolonizing the coast of eastern Hokkaido. Their diet includes benthic invertebrates such as bivalves, sea urchins, snails, and chitons. In the fall of 2021, a harmful algal bloom (HAB) of Karenia selliformis occurred across Hokkaidos northern and eastern coasts, leading to a massive mortality of sea urchins. This dinoflagellate produces a neurotoxin (gymnodimine) implicated in shellfish poisoning. To determine the effect of the HAB on the marine community, we conducted benthic surveys using SCUBA and visually monitored the prey items of the sea otters in the affected area from 2020 to 2023. Following the HAB, we observed an 82% decrease in benthic sea urchin density (number m2), leading to their complete absence from the diet of sea otters. Conversely, bivalve density increased six-fold, accompanied by a nearly two-fold rise in their percentage in the sea otters diet. Minimal changes were observed in the density of chitons and snails, with no significant alteration in the sea otters diet. Despite these changes, the impact of the HAB on otters dietary preferences was temporary, as the percentage of dietary sea urchins began recovering one year later. Sea otters augmented their diet with bivalves to compensate for the reduced availability of sea urchins during the HAB with no apparent effects on the number of sea otters or their health. Our results highlight the adaptability of sea otters to adjust their diet according to prey availability.

ecology↗