Wynn R, Harkins P C, Richards F M, Fox R O
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06511, USA.
Protein Sci. 1996 Jun;5(6):1026-31. doi: 10.1002/pro.5560050605.
The structures of several variants of staphylococcal nuclease with long flexible unnatural amino acid side chains in the hydrophobic core have been determined by X-ray crystallography. The unnatural amino acids are disulfide moieties between the lone cysteine residue in V23C nuclease and methane, ethane, 1-n-propane, 1-n-butane, 1-n-pentane, and 2-hydroxyethyl thiols. We have examined changes in the core packing of these mutants. Side chains as large as the 1-n-propyl cysteine disulfide can be incorporated without perturbation of the structure. This is due, in part, to cavities present in the wild-type protein. The longest side chains are not well defined, even though they remain buried within the protein interior. These results suggest that the enthalpy-entropy balance that governs the rigidity of protein interiors favors tight packing only weakly. Additionally, the tight packing observed normally in protein interiors may reflect, in part, the limited numbers of rotamers available to the natural amino acids.
通过X射线晶体学确定了几种在疏水核心带有长柔性非天然氨基酸侧链的葡萄球菌核酸酶变体的结构。非天然氨基酸是V23C核酸酶中唯一的半胱氨酸残基与甲烷、乙烷、正丙硫醇、正丁硫醇、正戊硫醇和2-羟乙基硫醇之间的二硫键部分。我们研究了这些突变体核心堆积的变化。像正丙基半胱氨酸二硫键这么大的侧链能够被纳入而不干扰结构。这部分归因于野生型蛋白质中存在的空洞。最长的侧链虽然仍埋在蛋白质内部,但定义不明确。这些结果表明,控制蛋白质内部刚性的焓-熵平衡仅微弱地有利于紧密堆积。此外,通常在蛋白质内部观察到的紧密堆积可能部分反映了天然氨基酸可利用的旋转异构体数量有限。