Glover Chris N, Wood Chris M
National Institute of Nutrition and Seafood Research, Bergen, Norway.
J Comp Physiol B. 2008 Jan;178(1):101-9. doi: 10.1007/s00360-007-0203-2. Epub 2007 Aug 28.
Bioavailability is integral in mediating the delicate balance between nutritive and potentially toxic levels of copper in fish diets. Brush-border membrane vesicles isolated from freshwater rainbow trout intestine were used to characterise apical copper absorption, and to examine the influence of the amino acid histidine on this process. In the absence of histidine, a low affinity, high capacity copper uptake mechanism was described. However, when expressed as a function of ionic copper (Cu(2+)), absorption was linear, rather than saturable, suggesting that the saturable curve was an artifact of copper speciation. Conversely, in the presence of L: -histidine (780 microM) saturable uptake was characterised. The uptake capacity discerned (J (max) of 354 +/- 81 nmol mg protein(-1) min(-1)) in the presence of histidine indicated a significantly reduced capacity for copper transport than that in the absence of histidine. To determine if copper uptake was achievable through putative histidine uptake pathways, copper and histidine were incubated in the presence of tenfold greater concentrations of amino acids proposed to block histidine transporters. Accounting for changes in copper speciation, significant inhibition of uptake by glycine and lysine were noted at copper levels of 699 and 1,028 microM. These results suggest that copper-histidine complexes may be transportable via specific amino acid-transporters in the brush-border membrane.
生物利用度对于调节鱼类饲料中铜的营养水平和潜在毒性水平之间的微妙平衡至关重要。从淡水虹鳟鱼肠道分离的刷状缘膜囊泡用于表征顶端铜吸收,并研究氨基酸组氨酸对该过程的影响。在没有组氨酸的情况下,描述了一种低亲和力、高容量的铜摄取机制。然而,当以离子铜(Cu(2+))的函数表示时,吸收是线性的,而不是饱和的,这表明饱和曲线是铜形态的假象。相反,在L-组氨酸(780 microM)存在的情况下,可观察到饱和摄取。在组氨酸存在下识别出的摄取能力(J(max)为354±81 nmol mg蛋白(-1) min(-1))表明,与没有组氨酸时相比,铜运输能力显著降低。为了确定是否可以通过假定的组氨酸摄取途径实现铜摄取,将铜和组氨酸在十倍浓度更高的氨基酸存在下孵育,这些氨基酸被认为可以阻断组氨酸转运体。考虑到铜形态的变化,在铜水平为699和1028 microM时,观察到甘氨酸和赖氨酸对摄取有显著抑制作用。这些结果表明,铜-组氨酸复合物可能通过刷状缘膜中的特定氨基酸转运体进行转运。