Ruđer Bošković Institute, Division for Marine and Environmental Research, Bijenička cesta 54, Zagreb, Croatia.
Ruđer Bošković Institute, Division for Marine and Environmental Research, Bijenička cesta 54, Zagreb, Croatia.
Int J Biol Macromol. 2024 Jan;256(Pt 2):128209. doi: 10.1016/j.ijbiomac.2023.128209. Epub 2023 Nov 21.
Since fish metalloproteins are still not thoroughly characterized, the aim of this study was to investigate the acidic/basic nature of biomolecules involved in the sequestration of twelve selected metals in the soluble hepatic fraction of an important aquatic bioindicator organism, namely the fish species northern pike (Esox lucius). For this purpose, the hyphenated system HPLC-ICP-MS was applied, with chromatographic separation based on anion/cation-exchange principle at physiological pH (7.4). The results indicated predominant acidic nature of metal-binding peptides/proteins in the studied hepatic fraction. More than 90 % of Ag, Cd, Co, Cu, Fe, Mo, and Pb were eluted with negatively charged biomolecules, and >70 % of Bi, Mn, and Zn. Thallium was revealed to bind equally to negatively and positively charged biomolecules, and Cs predominantly to positively charged ones. The majority of acidic (negatively charged) metalloproteins/peptides were coeluted within the elution time range of applied standard proteins, having pIs clustered around 4-6. Furthermore, binding of several metals (Ag, Cd, Cu, Zn) to two MT-isoforms was assumed, with Cd and Zn preferentially bound to MT1 and Ag to MT2, and Cu evenly distributed between the two. The results presented here are the first of their kind for the important bioindicator species, the northern pike, as well as one of the rare comprehensive studies on the acidic/basic nature of metal-binding biomolecules in fish, which can contribute significantly to a better understanding of the behaviour and fate of metals in the fish organism, specifically in liver as main metabolic and detoxification organ.
由于鱼类金属蛋白尚未得到充分的描述,本研究旨在探讨生物分子的酸碱性质,这些生物分子参与了一种重要的水生生物指示剂(即北方梭鲈)可溶肝部分中 12 种选定金属的螯合。为此,应用了 HPLC-ICP-MS 联用系统,在生理 pH(7.4)下基于阴离子/阳离子交换原理进行色谱分离。结果表明,在所研究的肝部分中,金属结合肽/蛋白主要呈酸性。超过 90%的 Ag、Cd、Co、Cu、Fe、Mo 和 Pb 与带负电荷的生物分子洗脱,而超过 70%的 Bi、Mn 和 Zn 也是如此。Tl 被发现与带负电荷和带正电荷的生物分子同样结合,而 Cs 主要与带正电荷的生物分子结合。大多数酸性(带负电荷)的金属蛋白/肽在应用标准蛋白的洗脱时间范围内共洗脱,pI 聚集在 4-6 左右。此外,假定几种金属(Ag、Cd、Cu、Zn)与两种 MT 同工型结合,Cd 和 Zn 优先与 MT1 结合,Ag 与 MT2 结合,而 Cu 在两者之间均匀分布。本研究结果是针对北方梭鲈这一重要生物指示剂物种的首例,也是鱼类中金属结合生物分子酸碱性质的罕见综合研究之一,这将有助于更好地理解金属在鱼类生物体中的行为和命运,特别是在肝脏这一主要代谢和解毒器官中。