Department of Marine Biology and Ecology, Rosenstiel School of Marine and Atmospheric Science, University of Miami, Miami, FL, United States.
The Shraga Segal Department of Microbiology, Immunology, and Genetics, Faculty of Health Sciences, Regenerative Medicine and Stem Cell Research Center, Ben Gurion University of the Negev, Beer Sheva, Israel.
Front Immunol. 2021 Jul 26;12:662803. doi: 10.3389/fimmu.2021.662803. eCollection 2021.
Phagocytosis is the cellular defense mechanism used to eliminate antigens derived from dysregulated or damaged cells, and microbial pathogens. Phagocytosis is therefore a pillar of innate immunity, whereby foreign particles are engulfed and degraded in lysolitic vesicles. In hexacorallians, phagocytic mechanisms are poorly understood, though putative anthozoan phagocytic cells (amoebocytes) have been identified histologically. We identify and characterize phagocytes from the coral and the sea anemone . Using fluorescence-activated cell sorting and microscopy, we show that distinct populations of phagocytic cells engulf bacteria, fungal antigens, and beads. In addition to pathogenic antigens, we show that phagocytic cells engulf self, damaged cells. We show that target antigens localize to low pH phagolysosomes, and that degradation is occurring within them. Inhibiting actin filament rearrangement interferes with efficient particle phagocytosis but does not affect small molecule pinocytosis. We also demonstrate that cellular markers for lysolitic vesicles and reactive oxygen species (ROS) correlate with hexacorallian phagocytes. These results establish a foundation for improving our understanding of hexacorallian immune cell biology.
吞噬作用是一种细胞防御机制,用于消除源自失调或受损细胞和微生物病原体的抗原。因此,吞噬作用是先天免疫的一个支柱,通过该机制,外来颗粒在溶酶体小泡中被吞噬和降解。在六放珊瑚中,吞噬机制了解甚少,尽管已经在组织学上鉴定出假定的珊瑚吞噬细胞(变形细胞)。我们从珊瑚和海葵中鉴定和表征吞噬细胞。使用荧光激活细胞分选和显微镜,我们表明不同群体的吞噬细胞吞噬细菌、真菌抗原和珠子。除了致病性抗原外,我们还表明吞噬细胞吞噬自身、受损细胞。我们表明靶抗原定位于低 pH 吞噬溶酶体,并且降解正在其中进行。抑制肌动蛋白丝重排会干扰有效颗粒吞噬作用,但不影响小分子胞饮作用。我们还证明,溶酶体和活性氧 (ROS) 的细胞标记与六放珊瑚的吞噬细胞相关。这些结果为我们改善对六放珊瑚免疫细胞生物学的理解奠定了基础。