Department of Chemistry, and Skaggs Institute for Chemical Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
Department of Biochemistry, University of Washington, Seattle, WA, 98195, USA.
Science. 2015 Feb 20;347(6224):863-867. doi: 10.1126/science.aaa2424.
The fleeting lifetimes of the transition states (TSs) of chemical reactions make determination of their three-dimensional structures by diffraction methods a challenge. Here, we used packing interactions within the core of a protein to stabilize the planar TS conformation for rotation around the central carbon-carbon bond of biphenyl so that it could be directly observed by x-ray crystallography. The computational protein design software Rosetta was used to design a pocket within threonyl-transfer RNA synthetase from the thermophile Pyrococcus abyssi that forms complementary van der Waals interactions with a planar biphenyl. This latter moiety was introduced biosynthetically as the side chain of the noncanonical amino acid p-biphenylalanine. Through iterative rounds of computational design and structural analysis, we identified a protein in which the side chain of p-biphenylalanine is trapped in the energetically disfavored, coplanar conformation of the TS of the bond rotation reaction.
化学反应过渡态(TS)的短暂寿命使得通过衍射方法确定其三维结构具有挑战性。在这里,我们利用蛋白质核心内的堆积相互作用来稳定联苯中碳-碳键旋转的平面 TS 构象,以便可以通过 X 射线晶体学直接观察到它。计算蛋白质设计软件 Rosetta 用于设计来自嗜热古菌 Pyrococcus abyssi 的苏氨酸转移 RNA 合成酶内的口袋,该口袋与平面联苯形成互补的范德华相互作用。后一部分通过生物合成作为非典型氨基酸对-联苯丙氨酸的侧链引入。通过反复的计算设计和结构分析,我们在一种蛋白质中鉴定出 p-联苯丙氨酸的侧链被捕获在键旋转反应的 TS 的能量不利的共面构象中。