Devoid Samantha J, Etter Ron, Sugumaran Manickam, Wallace Gordon T, Robinson William E
Department of Biology, University of Massachusetts Boston, 100 Morrissey Boulevard, Boston, Massachusetts 02125-3393, USA.
Environ Toxicol Chem. 2007 May;26(5):872-7. doi: 10.1897/06-335r.1.
Few studies have directly addressed the question of how metals (both essential and nonessential) are transported in the circulatory system of bivalve mollusks. One potential metal-transport protein, histidine-rich glycoprotein (HRG), has previously been isolated and characterized from the blood plasma of the marine mussel Mytilus edulis L. The present study was undertaken to investigate the extent to which mussel HRG can bind a variety of essential and nonessential metals in vitro, using immobilized metal-ion affinity chromatography (IMAC) and sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The equilibrium metal speciation model MINTEQA2 was used to compute the amount of metal that bound to the IMAC packing material during the charging and initial wash steps. Results demonstrated that HRG can bind all seven of the metals tested (Ca, Cd, Hg, Mg, Ni, Pd, and Zn) and that HRG is the only metal-binding protein in IMAC eluents. Because HRG-metal binding strengths (log K(a)) likely correspond with histidine-metal binding strengths, and because HRG is the predominant mussel plasma protein, the majority of each of the seven metals probably would be present in mussel blood as protein-bound metal rather than as free metal ion. The finding that a single mussel plasma protein may be responsible for binding all these metals raises important questions about how these different metals are subsequently transferred from HRG to different tissues of the mussel, where they may exhibit tissue-specific patterns of utilization, sequestration, elimination, and toxicity.
很少有研究直接探讨金属(包括必需金属和非必需金属)在双壳贝类软体动物循环系统中的运输问题。一种潜在的金属运输蛋白,即富含组氨酸的糖蛋白(HRG),此前已从海洋贻贝紫贻贝的血浆中分离并鉴定出来。本研究旨在利用固定化金属离子亲和色谱法(IMAC)和十二烷基硫酸钠-聚丙烯酰胺凝胶电泳,研究贻贝HRG在体外结合多种必需和非必需金属的程度。利用平衡金属形态模型MINTEQA2计算在装填和初始洗涤步骤中与IMAC填充材料结合的金属量。结果表明,HRG可以结合所测试的所有七种金属(钙、镉、汞、镁、镍、钯和锌),并且HRG是IMAC洗脱液中唯一的金属结合蛋白。由于HRG与金属的结合强度(log K(a))可能与组氨酸与金属的结合强度相对应,并且由于HRG是贻贝血浆中的主要蛋白质,这七种金属中的每一种在贻贝血液中可能大部分以与蛋白质结合的金属形式存在,而不是以游离金属离子的形式存在。单一贻贝血浆蛋白可能负责结合所有这些金属这一发现,引发了关于这些不同金属随后如何从HRG转移到贻贝的不同组织的重要问题,在这些组织中它们可能表现出组织特异性的利用、螯合、消除和毒性模式。