Banci Lucia, Bertini Ivano, Del Conte Rebecca
Department of Chemistry and Centro di Risonanze Magnetiche, University of Florence, Via Luigi Sacconi 6, 50019, Sesto Fiorentino, Italy.
Biochemistry. 2003 Nov 25;42(46):13422-8. doi: 10.1021/bi0353326.
The solution structure of apo CopZ from Bacillus subtilis has been determined with the aim of investigating the changes in the hydrophobic interactions around the M-X-C-X-X-C copper(I) binding motif upon metal binding. The methionine of this motif (Met 11 in CopZ) points toward the solvent in apo CopZ, whereas its sulfur atom is close to the metal ion in the metal-loaded protein, though probably not at binding distance. This change is associated with the weakening of the interaction between Leu 37 and Cys 16, present in the apo form, and the formation of an interaction between Met 11 and Tyr 65. Loops 1, 3, and 5 are affected by metal binding. Comparison with the structure of other homologous proteins confirms that often metal binding affects a hydrophobic patch around the metal site, possibly for optimizing and tuning the hydrophobic interactions with the partners. It is also shown that copper(I) exchanges among apo CopZ molecules in slow exchange on the NMR time scale, whereas it is known that such exchange between partner molecules (i.e., metallochaperones and metal pumps) is fast.
已确定来自枯草芽孢杆菌的脱辅基CopZ的溶液结构,目的是研究金属结合后M-X-C-X-X-C铜(I)结合基序周围疏水相互作用的变化。该基序的甲硫氨酸(CopZ中的Met 11)在脱辅基CopZ中指向溶剂,而其硫原子在金属负载蛋白中靠近金属离子,尽管可能不在结合距离处。这种变化与脱辅基形式中存在的Leu 37和Cys 16之间相互作用的减弱以及Met 11和Tyr 65之间相互作用的形成有关。环1、3和5受金属结合影响。与其他同源蛋白的结构比较证实,金属结合通常会影响金属位点周围的疏水补丁,这可能是为了优化和调整与伴侣的疏水相互作用。还表明,在核磁共振时间尺度上,铜(I)在脱辅基CopZ分子之间以慢交换进行交换,而众所周知,伴侣分子(即金属伴侣蛋白和金属泵)之间的这种交换是快速的。