College of Life Sciences, Zhejiang University, Hangzhou, 310058, Zhejiang, People's Republic of China.
Key Laboratory of Marine Ecosystem and Biogeochemistry, State Oceanic Administration, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou, 310012, Zhejiang, People's Republic of China.
Biometals. 2019 Apr;32(2):251-264. doi: 10.1007/s10534-019-00174-8. Epub 2019 Feb 12.
Rimicaris exoculata (Decapoda: Bresiliidae) is one of the dominant species among hydrothermal vent communities along the Mid-Atlantic Ridge. This shrimp can tolerate high concentrations of heavy metals such as iron, but the mechanisms used for detoxification and utilization of excess metals remain largely unknown. Ferritin is a major iron storage protein in most living organisms. The central heavy subunit of ferritin (H-ferritin) possesses ferroxidase activity and converts iron from Fe to Fe, the non-toxic form used for storage. In the present study, the H-ferritin RexFrtH was identified in the hydrothermal vent shrimp R. exoculata, and found to be highly expressed in the gill, the main organ involved in bioaccumulation of metals, at both RNA and protein levels. Accumulation of RexFrtH decreased from efferent to afferent vessels, coinciding with the direction of water flow through the gills. Fe was localized with RexFrtH, and in vitro iron-binding and ferroxidase assays using recombinant RexFrtH confirmed the high affinity for iron. Based on these results, we propose a model of iron metabolism in R. exoculata gills; ferrous iron from ambient hydrothermal water accumulates and is converted and stored in ferric form by RexFrtH as an iron reservoir when needed for metabolism, or excreted as an intermediate to prevent iron overload. The findings expand our understanding of the adaptation strategies used by shrimps inhabiting extreme hydrothermal vents to cope with extremely high heavy metal concentrations.
铠甲虾(Decapoda:Bresiliidae)是中大西洋脊热液喷口群落中的优势物种之一。这种虾能够耐受高浓度的重金属,如铁,但用于解毒和利用多余金属的机制在很大程度上仍然未知。铁蛋白是大多数生物体内主要的铁储存蛋白。铁蛋白的中央重亚基(H-铁蛋白)具有亚铁氧化酶活性,可将铁从 Fe 转化为 Fe,这是用于储存的无毒形式。在本研究中,在热液喷口虾铠甲虾中鉴定出了 H-铁蛋白 RexFrtH,并在 RNA 和蛋白质水平上均在主要参与金属生物蓄积的鳃中高度表达。RexFrtH 的积累从出水管到入水管减少,与水通过鳃的流动方向一致。铁与 RexFrtH 定位,使用重组 RexFrtH 进行体外铁结合和亚铁氧化酶测定证实了对铁的高亲和力。基于这些结果,我们提出了铠甲虾鳃中铁代谢的模型;来自周围热液水的亚铁铁积累,并通过 RexFrtH 转化和以三价铁形式储存,作为代谢所需的铁库,或作为中间产物排泄以防止铁过载。这些发现扩展了我们对栖息在极端热液喷口的虾类适应极端高重金属浓度的策略的理解。