Department of Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.
Org Biomol Chem. 2019 Feb 13;17(7):1862-1868. doi: 10.1039/c8ob01678j.
We investigated 26 midsized peptides (∼30 amino acids in length) selected using mRNA display to perform a nucleophilic aromatic substitution reaction (SNAr). Analysis suggested a diverse set of reactive sequences with significant differences in primary sequence, secondary structure and even predicted tertiary structural features. Several of the sequences displayed rapid kinetics allowing for near complete labeling in under one hour. Rosetta ab initio structure prediction of these sequences suggested a landscape of structural features, ranging from beta-sheet-based sequences to those possessing more alpha-helical-like character. Circular dichroism spectroscopy confirmed elements of the structure predictions for the majority of peptides. This analysis additionally uncovered that several peptides underwent secondary structure alterations upon reaction. These results suggest a broad sequence and structural landscape of SNAr active peptides along with a potentially important feature of these biopolymers.
我们研究了 26 种中尺度肽(约 30 个氨基酸长),这些肽是使用 mRNA 显示选择的,用于进行亲核芳香取代反应(SNAr)。分析表明,存在一组具有显著差异的反应性序列,在一级序列、二级结构甚至预测的三级结构特征上存在差异。其中几个序列显示出快速的动力学,允许在不到一个小时的时间内完成近乎完全的标记。对这些序列进行 Rosetta 从头结构预测表明,存在一系列结构特征,从基于β-折叠的序列到具有更α-螺旋特征的序列。圆二色性光谱学证实了大多数肽的结构预测的元素。这项分析还揭示了一些肽在反应过程中经历了二级结构的改变。这些结果表明,SNAr 活性肽具有广泛的序列和结构景观,以及这些生物聚合物的一个潜在重要特征。