Institute of Zoology, Center for Molecular Biosciences Innsbruck, University of Innsbruck, 25 6020 Technikerstraße, Austria.
Department of Cell Biology, Adaptive Biology Laboratory, Universidade Federal do Paraná, Curitiba, Paraná 82590-300, Brazil.
Int J Mol Sci. 2020 Jan 17;21(2):599. doi: 10.3390/ijms21020599.
The heavy metal cadmium (Cd) is known to modulate the immune system, challenging soil-dwelling organisms where environmental Cd pollution is high. Since earthworms lack adaptive immunity, we determined Cd-related effects on coelomocytes, the cellular part of innate immunity, which is also the site of detoxification processes. A proteomics approach revealed a set of immunity-related proteins as well as gene products involved in energy metabolism changing in earthworms in response to Cd exposure. Based on these results, we conducted extracellular flux measurements of oxygen and acidification to reveal the effect of Cd on coelomocyte metabolism. We observed a significantly changing oxygen consumption rate, extracellular acidification, as well as metabolic potential, which can be defined as the response to an induced energy demand. Acute changes in intracellular calcium levels were also observed, indicating impaired coelomocyte activation. Lysosomes, the cell protein recycling center, and mitochondrial parameters did not change. Taken together, we were able to characterize coelomocyte metabolism to reveal a potential link to an impaired immune system upon Cd exposure.
重金属镉(Cd)已知可以调节免疫系统,对生活在土壤中的生物体造成挑战,因为这些生物体所处的环境中镉污染水平很高。由于蚯蚓缺乏适应性免疫,我们确定了 Cd 对体腔细胞(先天免疫的细胞部分,也是解毒过程的发生部位)的相关影响。蛋白质组学方法揭示了一组与免疫相关的蛋白质,以及参与能量代谢的基因产物,这些蛋白质和基因产物在蚯蚓暴露于 Cd 时会发生变化。基于这些结果,我们进行了氧气和酸化的细胞外通量测量,以揭示 Cd 对体腔细胞代谢的影响。我们观察到氧消耗率、细胞外酸化以及代谢潜力的显著变化,这可以定义为对诱导能量需求的反应。还观察到细胞内钙离子水平的急性变化,表明体腔细胞的激活受损。溶酶体是细胞蛋白回收中心,线粒体参数没有变化。总的来说,我们能够对体腔细胞代谢进行特征描述,以揭示 Cd 暴露后免疫系统受损的潜在联系。