Chiang Yi-Chun, Lin Yu-Ju, Horng Jia-Cherng
Department of Chemistry, National Tsing Hua University, Hsinchu, Taiwan 30013, R.O.C.
Protein Sci. 2009 Sep;18(9):1967-77. doi: 10.1002/pro.208.
There has been growing interest in polyproline type II (PPII) helices since PPII helices have been found in folded and unfolded proteins and involved in a variety of biological activities. Polyproline can also form type I helices (PPI) which are very different from PPII conformation and only exist in certain organic solvents. Recent studies have shown that stereoelectronic effects play a critical role in stabilizing a PPI or PPII helix. Here, we have synthesized a series of host-guest peptides with an electron-withdrawing substituent at the 4R or 4S position of proline and used a kinetic approach to further explore stereoelectronic effects on the transition barrier of the interconversion between PPI and PPII conformations. Time-dependent circular dichroism measurements revealed that the rates of PPII --> PPI conversion were reduced upon incorporating the hydroxyl-, fluoro-, and methoxy-groups at the 4R position while the rates would be increased if these substituents were at the 4S position. We quantified the changes in transition free energy by comparing their rate constants. (4R,2S)-4-Fluoroproline and (4S,2S)-4-fluoroproline have the largest effect on the transition energy barrier for PPII --> PPI conversion. Our results provide important insights into the role of stereoelectronic effects on the PPII --> PPI transition state barrier, which has not been reported in past thermodynamic studies.
自从在折叠和未折叠的蛋白质中发现多聚脯氨酸II型(PPII)螺旋并参与多种生物活性以来,人们对其兴趣与日俱增。多聚脯氨酸还能形成I型螺旋(PPI),其构象与PPII截然不同,且仅存在于某些有机溶剂中。最近的研究表明,立体电子效应在稳定PPI或PPII螺旋中起着关键作用。在此,我们合成了一系列在脯氨酸的4R或4S位置带有吸电子取代基的主客体肽,并采用动力学方法进一步探究立体电子效应对PPI和PPII构象相互转化的过渡势垒的影响。时间分辨圆二色性测量结果显示,在4R位置引入羟基、氟和甲氧基后,PPII→PPI的转化速率降低,而如果这些取代基位于4S位置,速率则会增加。我们通过比较它们的速率常数来量化过渡自由能的变化。(4R,2S)-4-氟脯氨酸和(4S,2S)-4-氟脯氨酸对PPII→PPI转化的过渡能垒影响最大。我们的结果为立体电子效应在PPII→PPI过渡态势垒中的作用提供了重要见解,这在以往的热力学研究中尚未见报道。