Photoresponsive polypeptides, photochromic and conformational behavior of spiropyran-containing poly(L-glutamate)s under acid conditions

Citation
A. Fissi et al., Photoresponsive polypeptides, photochromic and conformational behavior of spiropyran-containing poly(L-glutamate)s under acid conditions, MACROMOLEC, 32(21), 1999, pp. 7116-7121
Citations number
25
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
MACROMOLECULES
ISSN journal
00249297 → ACNP
Volume
32
Issue
21
Year of publication
1999
Pages
7116 - 7121
Database
ISI
SICI code
0024-9297(19991019)32:21<7116:PPPACB>2.0.ZU;2-G
Abstract
High molecular weight poly(L-glutamic acid) was chemically modified with a spiropyran reagent to give polypeptides containing 35 and 85 mol % spiropyr an units in the side chains. To investigate the photochromic and conformati onal behavior in acid conditions, the polypeptides were dissolved in hexafl uoro-2-propanol (HFP) and a small amount of trifluoroacetic acid was added (TFA, c = 5 x 10(-4) g/mL). In the absence of acid, the same polypeptides w ere found to respond to light, giving reversible coil/alpha-helix transitio ns. In the presence of TFA, by contrast, photoisomerization of the chromoph ores in the side chains did not; result in any conformational variation of the macromolecular main chains, and CD spectra showed that the macromolecul es adopted a random coil structure, both in the dark and after light exposu re. However, when appropriate amounts of cosolvents such as methanol (MeOH) or trifluoroethanol (TFE) were added to the HFP/TFA solutions, the system again responded to light giving reversible coil/alpha-helix transitions of the macromolecular structure. The extent of the photoinduced conformational changes depended on solvent composition and the photoresponse could be mod ulated by the combined action of light; and chemical environment. For HFP/M eOH solvent mixture, it is possible to trigger the photostimulated coil/alp ha-helix transition in a narrow window of solvent composition, so that the system is characterized by a gated photoresponse. The molecular processes r esponsible for the observed photoinduced conformational changes are discuss ed on the basis of absorption and fluorescence results. These results also allow us to set up a detailed picture of the molecular mechanisms responsib le for the described chemo-modulated photosensory system.