Department of Zoology and Center of Molecular Biosciences Innsbruck, University of Innsbruck, Innsbruck, Austria.
Institute of Molecular Physiology, Johannes Gutenberg-University of Mainz, Mainz, Germany.
J Exp Zool A Ecol Integr Physiol. 2021 Feb;335(2):228-238. doi: 10.1002/jez.2425. Epub 2020 Nov 3.
Terrestrial gastropods express metal-selective metallothioneins (MTs) by which they handle metal ions such as Zn , Cd , and Cu /Cu through separate metabolic pathways. At the same time, they depend on the availability of sufficient amounts of Cu as an essential constituent of their respiratory protein, hemocyanin (Hc). It was, therefore, suggested that in snails Cu-dependent MT and Hc pathways might be metabolically connected. In fact, the Cu-specific snail MT (CuMT) is exclusively expressed in rhogocytes, a particular molluscan cell type present in the hemocoel and connective tissues. Snail rhogocytes are also the sites of Hc synthesis. In the present study, possible interactions between the metal-regulatory and detoxifying activity of MTs and the Cu demand of Hc isoforms was explored in the edible snail Cornu aspersum, one of the most common European helicid land snails. This species possesses CdMT and CuMT isoforms involved in metal-selective physiological tasks. In addition, C. aspersum expresses three different Hc isoforms (CaH ɑD, CaH ɑN, CaH β). We have examined the effect of Cd and Cu exposure on metal accumulation in the midgut gland and mantle of C. aspersum, testing the impact of these metals on transcriptional upregulation of CdMT, CuMT, and the three Hc genes in the two organs. We found that the CuMT and CaH ɑD genes exhibit an organ-specific transcriptional upregulation in the midgut gland of Cu-exposed snails. These results are discussed in view of possible interrelationships between the metal-selective activity of snail MT isoforms and the synthesis and metabolism of Hc isoforms.
陆生腹足纲动物通过金属选择性金属硫蛋白 (MTs) 来处理锌 (Zn)、镉 (Cd) 和铜/铜等金属离子,这些蛋白通过不同的代谢途径发挥作用。同时,它们还依赖于足够数量的铜作为其呼吸蛋白血蓝蛋白 (Hc) 的必需成分。因此,有人认为在蜗牛中,铜依赖性 MT 和 Hc 途径可能在代谢上是相互关联的。事实上,铜特异性蜗牛 MT (CuMT) 仅在 Rhogocytes 中表达,Rhogocytes 是一种存在于血腔和结缔组织中的特殊软体动物细胞类型。蜗牛 Rhogocytes 也是 Hc 合成的部位。在本研究中,我们探讨了金属调节和解毒活性 MTs 与 Hc 同工型的铜需求之间的可能相互作用,研究对象为食用蜗牛 Cornu aspersum,这是欧洲最常见的 Helix 陆地蜗牛之一。该物种具有参与金属选择性生理任务的 CdMT 和 CuMT 同工型。此外,C. aspersum 还表达了三种不同的 Hc 同工型 (CaH ɑD、CaH ɑN、CaH β)。我们检测了 Cd 和 Cu 暴露对 C. aspersum 中肠腺和套膜金属积累的影响,测试了这些金属对两种器官中 CdMT、CuMT 和三个 Hc 基因转录上调的影响。我们发现,Cu 暴露的蜗牛中肠腺中 CuMT 和 CaH ɑD 基因表现出器官特异性的转录上调。这些结果将从蜗牛 MT 同工型的金属选择性活性与 Hc 同工型的合成和代谢之间的可能相互关系的角度进行讨论。