Khare Nidhi, Eggleston Carrick M, Lovelace David M, Boese Steven W
Department of Geology and Geophysics, University of Wyoming, Laramie, WY 82071, USA.
J Colloid Interface Sci. 2006 Nov 15;303(2):404-14. doi: 10.1016/j.jcis.2006.07.070. Epub 2006 Aug 1.
The interaction of metalloproteins with oxides has implications not only for bioanalytical systems and biosensors but also in the areas of biomimetic photovoltaic devices, bioremediation, and bacterial metal reduction. Here, we investigate mitochondrial ferricytochrome c (Cyt c) co-sorption with 0.01 and 0.1 M phosphate on hematite (alpha-Fe2O3) surfaces as a function of pH (2-11). Although Cyt c sorption to hematite in the presence of phosphate is consistent with electrostatic attraction, other forces act upon Cyt c as well. The occurrence of multilayer adsorption, and our AFM observations, suggest that Cyt c aggregates as the pH approaches the Cyt c isoelectric point. In solution, methionine coordination of heme Fe occurs only between pH 3 and 7, but in the presence of phosphate this coordination is retained up to pH 10. Electrochemical evidence for the presence of native Cyt c occurs down to pH 3 and up to pH 10 in the absence of phosphate, and this range is extended to pH 2 and 11 in the presence of phosphate. Cyt c that initially adsorbs to a hematite surface may undergo conformation change and coat the surface with unfolded protein such that subsequently adsorbing protein is more likely to retain the native conformational state. AFM provides evidence for rapid sorption kinetics for Cyt c co-sorbed with 0.01 or 0.1 M phosphate. Cyt c co-sorbed with 0.01 M phosphate appears to unfold on the surface of hematite while Cyt c co-sorbed with 0.1 M phosphate possibly retains native conformation due to aggregation.
金属蛋白与氧化物的相互作用不仅对生物分析系统和生物传感器有影响,而且在仿生光伏器件、生物修复和细菌金属还原等领域也有影响。在此,我们研究了线粒体铁细胞色素c(Cyt c)与0.01和0.1 M磷酸盐在赤铁矿(α-Fe₂O₃)表面的共吸附情况,该共吸附情况是pH值(2 - 11)的函数。尽管在磷酸盐存在的情况下Cyt c对赤铁矿的吸附符合静电吸引,但其他作用力也作用于Cyt c。多层吸附的出现以及我们的原子力显微镜观察结果表明,随着pH值接近Cyt c的等电点,Cyt c会发生聚集。在溶液中,血红素铁的甲硫氨酸配位仅在pH值为3至7之间发生,但在磷酸盐存在的情况下,这种配位在pH值达到10时仍能保留。在不存在磷酸盐的情况下,原生Cyt c存在的电化学证据在pH值低至3和高至10时出现,而在磷酸盐存在的情况下,这个范围扩展到pH值2和11。最初吸附到赤铁矿表面的Cyt c可能会发生构象变化,并用未折叠的蛋白质覆盖表面,这样随后吸附的蛋白质更有可能保留天然构象状态。原子力显微镜为与0.01或0.1 M磷酸盐共吸附的Cyt c提供了快速吸附动力学的证据。与0.01 M磷酸盐共吸附的Cyt c似乎在赤铁矿表面展开,而与0.1 M磷酸盐共吸附的Cyt c可能由于聚集而保留天然构象。