Scholle Michael D, Banach Bridget S, Hamdan Samir M, Richardson Charles C, Kay Brian K
Amunix, Inc., Mountain View, CA 94043, USA.
Biochim Biophys Acta. 2008 Nov;1784(11):1735-41. doi: 10.1016/j.bbapap.2008.06.022. Epub 2008 Jul 11.
Thioredoxin (Trx) is a highly conserved redox protein involved in several essential cellular processes. In this study, our goal was to isolate peptide ligands to Escherichia coli Trx that mimic protein-protein interactions, specifically the T7 polymerase-Trx interaction. To do this, we subjected Trx to affinity selection against a panel of linear and cysteine-constrained peptides using M13 phage display. A novel cyclized conserved peptide sequence, with a motif of C(D/N/S/T/G)D(S/T)-hydrophobic-C-X-hydrophobic-P, was isolated to Trx. These peptides bound specifically to the E. coli Trx when compared to the human and spirulina homologs. An alanine substitution of the active site cysteines (CGPC) resulted in a significant loss of peptide binding affinity to the Cys-32 mutant. The peptides were also characterized in the context of Trx's role as a processivity factor of the T7 DNA polymerase (gp5). As the interaction between gp5 and Trx normally takes place under reducing conditions, which might interfere with the conformation of the disulfide-bridged peptides, we made use of a 22 residue deletion mutant of gp5 in the thioredoxin binding domain (gp5Delta22) that bypassed the requirements of reducing conditions to interact with Trx. A competition study revealed that the peptide selectively inhibits the interaction of gp5Delta22 with Trx, under oxidizing conditions, with an IC50 of approximately 10 microM.
硫氧还蛋白(Trx)是一种高度保守的氧化还原蛋白,参与多种重要的细胞过程。在本研究中,我们的目标是分离出与大肠杆菌Trx相互作用的肽配体,以模拟蛋白质-蛋白质相互作用,特别是T7聚合酶-Trx相互作用。为此,我们使用M13噬菌体展示技术,对Trx进行针对一系列线性和半胱氨酸受限肽的亲和选择。分离出了一种新的环化保守肽序列,其基序为C(D/N/S/T/G)D(S/T)-疏水-C-X-疏水-P,该序列与Trx特异性结合。与人和螺旋藻的同源物相比,这些肽与大肠杆菌Trx特异性结合。活性位点半胱氨酸(CGPC)的丙氨酸替代导致肽与Cys-32突变体的结合亲和力显著丧失。这些肽还在Trx作为T7 DNA聚合酶(gp5)的持续合成因子的作用背景下进行了表征。由于gp5和Trx之间的相互作用通常在还原条件下发生,这可能会干扰二硫键桥接肽的构象,我们利用了gp5在硫氧还蛋白结合域中的一个22个残基缺失突变体(gp5Delta22),该突变体绕过了还原条件的要求来与Trx相互作用。一项竞争研究表明,在氧化条件下,该肽以约10 microM的IC50选择性抑制gp5Delta22与Trx的相互作用。