François Laura, Fortin Claude, Campbell Peter G C
INRS-Eau, Terre et Environnement, Université du Québec, 490 de la Couronne, Québec, Canada G1K 9A9.
Aquat Toxicol. 2007 Aug 30;84(2):123-32. doi: 10.1016/j.aquatox.2007.02.019. Epub 2007 Jun 16.
The influence of pH on short-term uptake of manganese and cadmium by the green alga Chlamydomonas reinhardtii was studied to better understand the nature of proton interactions with metal membrane transporters. Manganese and cadmium internalization fluxes (J(int)) were measured over a wide range of free metal ion concentrations from 1 x 10(-10) to 4 x 10(-4)M at several pH values (Mn: 5.0, 6.5 and 8.0; Cd: 5.0 and 6.5). For both metals, first-order biological internalization kinetics were observed but the maximum transport flux (J(max)) decreased when pH decreased, in contradiction with the Biotic Ligand Model (BLM). This result suggested a non-competitive inhibition of metal uptake by the H(+)-ion. A Michaelis-Menten type inhibition model considering proton and calcium competition was tested. The metal biotic ligand stability constants and the stability constants for competitive binding of Ca(2+) and H(+) with the metal transporters were calculated: for manganese, K(Mn)=10(4.20) and K(Ca)=10(3.71); for cadmium, K(Cd)=10(4.19) and K(Ca)=10(4.76); for both metal transport systems, K(H) was not a significant parameter. Furthermore, metal uptake was not significantly influenced by the pH of the antecedent growth medium, suggesting that increases in metal fluxes as the pH is raised are caused by conformational changes of the surface transport proteins rather than by the synthesis of additional transport sites. Our results demonstrate that the BLM in its present state does not properly describe the true influence of pH on manganese and cadmium uptake by algae and that a non-competitive inhibition component must be integrated.
为了更好地理解质子与金属膜转运蛋白相互作用的本质,研究了pH对莱茵衣藻短期摄取锰和镉的影响。在几个pH值(锰:5.0、6.5和8.0;镉:5.0和6.5)下,测定了1×10⁻¹⁰至4×10⁻⁴M的广泛游离金属离子浓度范围内的锰和镉内化通量(J(int))。对于这两种金属,均观察到一级生物内化动力学,但当pH降低时,最大转运通量(J(max))下降,这与生物配体模型(BLM)相矛盾。该结果表明H⁺离子对金属摄取具有非竞争性抑制作用。测试了考虑质子和钙竞争的米氏型抑制模型。计算了金属生物配体稳定常数以及Ca²⁺和H⁺与金属转运蛋白竞争性结合的稳定常数:对于锰,K(Mn)=10⁴·²⁰,K(Ca)=10³·⁷¹;对于镉,K(Cd)=10⁴·¹⁹,K(Ca)=10⁴·⁷⁶;对于两种金属转运系统,K(H)不是一个显著参数。此外,金属摄取不受先前生长培养基pH的显著影响,这表明随着pH升高金属通量的增加是由表面转运蛋白的构象变化引起的,而不是由额外转运位点的合成引起的。我们的结果表明,当前状态的BLM不能正确描述pH对藻类摄取锰和镉的真正影响,必须纳入非竞争性抑制成分。