Nuttall S D, Hattarki M, Guthrie R E, Hudson P J, Kortt A A
CSIRO Health Sciences and Nutrition, Parkville, Victoria, Australia.
J Protein Chem. 1999 Nov;18(8):813-21. doi: 10.1023/a:1020618910455.
We have selected the Streptoalloteichus hindustanus bleomycin-resistance protein ShBle, a 28-kDa homodimer, as a scaffold for the display of bioactive peptides and other peptide epitopes. To create a monomeric scaffold, we investigated the effect of mutating residue proline 9 to glycine. This residue plays a critical role in ShBle dimerization by affecting the position of the eight N-terminal residues which secure the interaction between the monomeric subunits. We demonstrate that this mutation weakens the dimerization interaction, resulting in establishment of a stable equilibrium between monomeric and dimeric ShBle species in solution. Circular dichroism and SDS-PAGE data indicate that the Pro9Gly mutation does not disrupt the structure of the molecule. Production of a fully monomeric form of ShBle required complete removal of the eight-residue N-terminal peptide, and the interaction across the now solvent-exposed hydrophobic interface of the ShBle monomer was insufficient to drive dimerization. To demonstrate efficient display of epitope tags on the ShBle protein, we displayed dual-octapeptide FLAG tags at the protein C-terminus. These additions did not interfere with protein folding or activity. The resulting ShBle scaffold was used to compare the efficiency of two commercial FLAG-specific antibodies by biosensor.
我们选择了印度斯坦链霉菌博来霉素抗性蛋白ShBle(一种28 kDa的同型二聚体)作为展示生物活性肽和其他肽表位的支架。为了创建单体支架,我们研究了将第9位脯氨酸残基突变为甘氨酸的效果。该残基通过影响八个N端残基的位置在ShBle二聚化中起关键作用,而这八个N端残基确保了单体亚基之间的相互作用。我们证明这种突变削弱了二聚化相互作用,导致溶液中单体和二聚体ShBle物种之间建立了稳定的平衡。圆二色性和SDS-PAGE数据表明Pro9Gly突变不会破坏分子结构。产生完全单体形式的ShBle需要完全去除八残基N端肽,并且ShBle单体现在暴露于溶剂的疏水界面之间的相互作用不足以驱动二聚化。为了证明表位标签在ShBle蛋白上的有效展示,我们在蛋白C端展示了双八肽FLAG标签。这些添加物不会干扰蛋白质折叠或活性。所得的ShBle支架用于通过生物传感器比较两种商业FLAG特异性抗体的效率。