Life Sciences Group, Institute Laue-Langevin, 71 Avenue des Martyrs, 38000 Grenoble, France.
Partnership for Structural Biology (PSB), 71 Avenue des Martyrs, 38000 Grenoble, France.
Acta Crystallogr D Struct Biol. 2021 Dec 1;77(Pt 12):1579-1590. doi: 10.1107/S2059798321010950. Epub 2021 Nov 17.
The biological function of a protein is intimately related to its structure and dynamics, which in turn are determined by the way in which it has been folded. In vitro refolding is commonly used for the recovery of recombinant proteins that are expressed in the form of inclusion bodies and is of central interest in terms of the folding pathways that occur in vivo. Here, biophysical data are reported for in vitro-refolded hydrogenated hen egg-white lysozyme, in combination with atomic resolution X-ray diffraction analyses, which allowed detailed comparisons with native hydrogenated and refolded perdeuterated lysozyme. Distinct folding modes are observed for the hydrogenated and perdeuterated refolded variants, which are determined by conformational changes to the backbone structure of the Lys97-Gly104 flexible loop. Surprisingly, the structure of the refolded perdeuterated protein is closer to that of native lysozyme than that of the refolded hydrogenated protein. These structural differences suggest that the observed decreases in thermal stability and enzymatic activity in the refolded perdeuterated and hydrogenated proteins are consequences of the macromolecular deuteration effect and of distinct folding dynamics, respectively. These results are discussed in the context of both in vitro and in vivo folding, as well as of lysozyme amyloidogenesis.
蛋白质的生物学功能与其结构和动力学密切相关,而结构和动力学又取决于其折叠方式。体外重折叠通常用于回收以包涵体形式表达的重组蛋白,这对于体内发生的折叠途径具有重要意义。本文报告了体外重折叠的氢化鸡卵清白溶菌酶的生物物理数据,结合原子分辨率 X 射线衍射分析,可与氢化和重折叠的氘代溶菌酶进行详细比较。观察到氢化和氘代重折叠变体具有不同的折叠模式,这是由 Lys97-Gly104 柔性环的骨架结构构象变化决定的。令人惊讶的是,重折叠的氘代蛋白的结构比重折叠的氢化蛋白更接近天然溶菌酶。这些结构差异表明,在重折叠的氘代和氢化蛋白中观察到的热稳定性和酶活性降低分别是大分子氘化效应和不同折叠动力学的结果。这些结果在体外和体内折叠以及溶菌酶淀粉样变性的背景下进行了讨论。