Department of Chemistry, University of Wisconsin, Madison, WI 53706, USA.
Proc Natl Acad Sci U S A. 2010 Jan 12;107(2):559-64. doi: 10.1073/pnas.0909592107. Epub 2009 Dec 31.
Preorganization is shown to endow a protein with extraordinary conformational stability. This preorganization is achieved by installing side-chain substituents that impose stereoelectronic and steric effects that restrict main-chain torsion angles. Replacing proline residues in (ProProGly)(7) collagen strands with 4-fluoroproline and 4-methylproline leads to the most stable known triple helices, having T ( m ) values that are increased by > 50 degrees C. Differential scanning calorimetry data indicate an entropic basis to the hyperstability, as expected from an origin in preorganization. Structural data at a resolution of 1.21 A reveal a prototypical triple helix with insignificant deviations to its main chain, even though 2/3 of the residues are nonnatural. Thus, preorganization of a main chain by subtle changes to side chains can confer extraordinary conformational stability upon a protein without perturbing its structure.
前组织化被证明赋予蛋白质非凡的构象稳定性。这种前组织化是通过安装侧链取代基来实现的,这些取代基施加了立体电子和空间效应,限制了主链扭转角。用 4-氟脯氨酸和 4-甲基脯氨酸取代(ProProGly)(7)胶原链中的脯氨酸残基,导致最稳定的已知三螺旋体,T(m)值增加超过 50°C。差示扫描量热法数据表明,超稳定性的基础是熵,这与前组织化的起源相符。分辨率为 1.21 A 的结构数据显示了一个典型的三螺旋体,其主链几乎没有偏差,尽管 2/3 的残基是非天然的。因此,通过对侧链进行微小的改变来对主链进行预组织化,可以赋予蛋白质非凡的构象稳定性,而不会破坏其结构。