Departamento de Química, Unidad Asociada al C.S.I.C., Universidad de La Rioja, Madre de Dios 51, E-26006 Logroño, La Rioja, Spain.
J Am Chem Soc. 2012 Apr 25;134(16):6960-3. doi: 10.1021/ja301868p. Epub 2012 Apr 16.
Reversible photocontrol of biomolecules requires chromophores that can efficiently undergo large conformational changes upon exposure to wavelengths of light that are compatible with living systems. We designed a benzylidene-pyrroline chromophore that mimics the Schiff base of rhodopsin and can be used to introduce light-switchable intramolecular cross-links in peptides and proteins. This new class of photoswitch undergoes an ~10 Å change in end-to-end distance upon isomerization and can be used to control the conformation of a target peptide efficiently and reversibly using, alternately, violet (400 nm) and blue (446 nm) light.
生物分子的可逆光控需要发色团,这些发色团在暴露于与生命系统兼容的光波长时能够有效地经历大的构象变化。我们设计了一种苯亚甲基-吡咯啉发色团,模拟视紫红质的席夫碱,可用于在肽和蛋白质中引入光开关的分子内交联。这种新的光开关在异构化时经历约 10 Å 的末端到末端距离变化,并且可以交替使用紫光(400nm)和蓝光(446nm)有效地和可逆地控制靶肽的构象。