Webber Tawnya, Gurung Sarsati, Saul Justin, Baker Trenton, Spatara Michelle, Freyer Matthew, Robinson Anne Skaja, Gage Matthew J
Department of Chemistry and Biochemistry, Northern Arizona University, Flagstaff, AZ 86011, U.S.A.
Biochem J. 2009 May 1;419(3):595-602. doi: 10.1042/BJ20081449.
TSP (P22 tailspike protein) is a well-established model system for studying the folding and assembly of oligomeric proteins, and previous studies have documented both in vivo and in vitro folding intermediates using this protein. Especially important is the C-terminus of TSP, which plays a critical role in the assembly and maturation of the protrimer intermediate to its final trimeric form. In the present study, we show that by grafting the C-terminus of TSP on to the monomeric MBP (maltose-binding protein), the resulting chimaera (MBP-537) is a trimeric protein. Moreover, Western blot studies (using an anti-TSP antibody) indicate that the TSP C-terminus in the MBP-537 chimaera has the same conformation as the native TSP. The oligomerization of the MBP-537 chimaera appears to involve hydrophobic interactions and a refolding sequence, both of which are analogous to the native TSP. These results underscore the importance of the TSP C-terminus in the assembly of the mature trimer and demonstrate its potential utility as a model to study the folding and assembly of the TSP C-terminus in isolation.
TSP(P22尾刺蛋白)是研究寡聚蛋白折叠和组装的一个成熟的模型系统,先前的研究已经记录了使用该蛋白在体内和体外的折叠中间体。TSP的C末端尤为重要,它在原聚体中间体组装并成熟为最终三聚体形式的过程中起关键作用。在本研究中,我们表明,通过将TSP的C末端嫁接到单体MBP(麦芽糖结合蛋白)上,得到的嵌合体(MBP-537)是一种三聚体蛋白。此外,蛋白质印迹研究(使用抗TSP抗体)表明,MBP-537嵌合体中的TSP C末端具有与天然TSP相同的构象。MBP-537嵌合体的寡聚化似乎涉及疏水相互作用和重折叠序列,这两者都与天然TSP类似。这些结果强调了TSP C末端在成熟三聚体组装中的重要性,并证明了其作为单独研究TSP C末端折叠和组装模型的潜在用途。