Laboratory of Malaria and Vector Research, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Rockville, United States.
Instituto de Bioquímica Médica Leopoldo de Meis, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
Elife. 2022 Sep 2;11:e81116. doi: 10.7554/eLife.81116.
Activation of signaling in by silencing , a suppressor of this pathway, enhances local release of hemocyte-derived microvesicles (HdMv), promoting activation of the mosquito complement-like system, which eliminates ookinetes. We uncovered the mechanism of this immune enhancement. silencing triggers a -mediated differentiation of granulocytes to the megacyte lineage, a new subpopulation of giant cells, resulting in a dramatic increase in the proportion of circulating megacytes. Megacytes are very plastic cells that are massively recruited to the basal midgut surface in response to infection. We show that signaling modulates hemocyte differentiation and that megacyte recruitment to the midgut greatly enhances mosquito immunity against .
沉默,作为这条通路的抑制因子,能激活 信号,促进血细胞衍生的微泡(HdMv)在局部的释放,从而激活蚊子补体样系统,消除 子孢子。我们揭示了这种免疫增强的机制。沉默触发了粒细胞通过 信号向巨细胞谱系的分化,这是巨细胞的一个新亚群,导致循环巨细胞的比例显著增加。巨细胞是可塑性很强的细胞,能在 感染时被大量募集到中肠的基底表面。我们表明, 信号能调节血细胞的分化,而巨细胞向中肠的募集极大地增强了蚊子对 的免疫力。