Hytönen Vesa P, Hörhä Jarno, Airenne Tomi T, Niskanen Einari A, Helttunen Kaisa J, Johnson Mark S, Salminen Tiina A, Kulomaa Markku S, Nordlund Henri R
NanoScience Center, Department of Biological and Environmental Science, University of Jyväskylä, Finland.
J Mol Biol. 2006 Jun 23;359(5):1352-63. doi: 10.1016/j.jmb.2006.04.044. Epub 2006 May 6.
Dual chain avidin (dcAvd) is an engineered avidin form, in which two circularly permuted chicken avidin monomers are fused into one polypeptide chain. DcAvd can theoretically form two different pseudotetrameric quaternary assemblies because of symmetry at the monomer-monomer interfaces. Here, our aim was to control the assembly of the quaternary structure of dcAvd. We introduced the mutation I117C into one of the circularly permuted domains of dcAvd and scanned residues along the 1-3 subunit interface of the other domain. Interestingly, V115H resulted in a single, disulfide locked quaternary assembly of dcAvd, whereas I117H could not guide the oligomerisation process even though it stabilised the protein. The modified dcAvd forms were found to retain their characteristic pseudotetrameric state both at high and low pH, and were shown to bind D-biotin at levels comparable to that of wild-type chicken avidin. The crystal structure of dcAvd-biotin complex at 1.95 Angstroms resolution demonstrates the formation of the functional dcAvd pseudotetramer at the atomic level and reveals the molecular basis for its special properties. Altogether, our data facilitate further engineering of the biotechnologically valuable dcAvd scaffold and gives insights into how to guide the quaternary structure assembly of oligomeric proteins.
双链抗生物素蛋白(dcAvd)是一种经过工程改造的抗生物素蛋白形式,其中两个经环化排列的鸡抗生物素蛋白单体融合成一条多肽链。由于单体 - 单体界面处的对称性,dcAvd理论上可以形成两种不同的假四聚体四级组装体。在此,我们的目标是控制dcAvd四级结构的组装。我们将I117C突变引入dcAvd的一个环化排列结构域,并沿着另一个结构域的1 - 3亚基界面扫描残基。有趣的是,V115H导致了dcAvd的单一、二硫键锁定的四级组装体,而I117H尽管能稳定蛋白质,但无法引导寡聚化过程。发现修饰后的dcAvd形式在高pH和低pH下均保持其特征性的假四聚体状态,并显示出与野生型鸡抗生物素蛋白相当水平的结合D - 生物素的能力。dcAvd - 生物素复合物在1.95埃分辨率下的晶体结构在原子水平上展示了功能性dcAvd假四聚体的形成,并揭示了其特殊性质的分子基础。总之,我们的数据有助于对具有生物技术价值的dcAvd支架进行进一步工程改造,并深入了解如何引导寡聚蛋白的四级结构组装。