Yi Q, Erman J E, Satterlee J D
Department of Biochemistry and Biophysics, Washington State University, Pullman 99164-4630.
Biochemistry. 1994 Oct 11;33(40):12032-41. doi: 10.1021/bi00206a004.
Hydrogen-deuterium (H-D) exchange labeling and proton NMR have been applied to study the protein-protein association between cytochrome c peroxidase (CcP) and yeast iso-1 ferricytochrome c. Specifically, the exchange behavior of individual backbone amide protons of yeast iso-1 ferricytochrome c in both CcP-bound (i.e., complexed) and free (i.e., never in the complex) forms has been investigated and used in an attempt to map the binding site of CcP on yeast iso-1 ferricytochrome c when the noncovalent complex was formed in very low salt solution. The exchange rates of certain amino acid amide protons were significantly slowed down, by up to 40-fold, in the complex compared to the free form. The protected regions on iso-1 ferricytochrome c include parts of the 10's helix and the 70's helix surrounding the cytochrome c heme solvent-exposed edge (the so-called "front side" of iso-1 cytochrome c). These regions are very similar to the cytochrome c peroxidase binding interface on iso-1 ferricytochrome c that has been defined by X-ray crystallographic data. This further supports the direct involvement of the front side of iso-1 cytochrome c in binding with cytochrome c peroxidase. The results from our H-D exchange experiments also indicated that the amide proton exchange rates of Trp59, Asp60, and part of the 90's helix, all of which are located on the opposite side (the "back" side) of ferricytochrome c from the heme solvent-exposed edge, are also retarded upon complex formation.
氢-氘(H-D)交换标记和质子核磁共振已被用于研究细胞色素c过氧化物酶(CcP)与酵母同工酶-1高铁细胞色素c之间的蛋白质-蛋白质相互作用。具体而言,研究了酵母同工酶-1高铁细胞色素c在与CcP结合(即形成复合物)和游离(即从未处于复合物中)两种形式下各个主链酰胺质子的交换行为,并试图在极低盐溶液中形成非共价复合物时,绘制CcP在酵母同工酶-1高铁细胞色素c上的结合位点。与游离形式相比,复合物中某些氨基酸酰胺质子的交换速率显著减慢,减慢倍数高达40倍。同工酶-1高铁细胞色素c上的受保护区域包括围绕细胞色素c血红素溶剂暴露边缘(即同工酶-1细胞色素c的所谓“正面”)的10's螺旋和70's螺旋的部分区域。这些区域与通过X射线晶体学数据确定的同工酶-1高铁细胞色素c上的细胞色素c过氧化物酶结合界面非常相似。这进一步支持了同工酶-1细胞色素c的正面直接参与与细胞色素c过氧化物酶的结合。我们的H-D交换实验结果还表明,色氨酸59、天冬氨酸60以及90's螺旋的一部分(它们都位于高铁细胞色素c与血红素溶剂暴露边缘相对的一侧,即“背面”)的酰胺质子交换速率在形成复合物后也会减慢。