TY - JOUR
T1 - Structure-based approach to the photocontrol of protein folding
AU - Zhang, Fuzhong
AU - Zarrine-Afsar, Arash
AU - Al-Abdul-Wahid, M. Sameer
AU - Prosser, R. Scott
AU - Davidson, Alan R.
AU - Woolley, G. Andrew
PY - 2009/2/18
Y1 - 2009/2/18
N2 - Photoswitchable proteins offer exciting prospects for remote control of biochemical processes. We propose a general approach to the design of photoswitchable proteins based on the introduction of a photoswitchable intramolecular cross-linker. We chose, as a model, a FynSH3 domain for which the free energy of folding is less than the energy available from photoisomerization of the cross-linker. Taking the experimentally determined structure of the folded protein as a starting point, mutations were made to introduce pairs of Cys residues so that the distance between Cys sulfur atoms matches the ideal length of the cis form, but not the trans form, of the cross-linker. When the trans cross-linker was introduced into this L3C-L29C-T47AFynSH3 mutant, the protein was destabilized so that folded and unfolded forms coexisted. Irradiation of the cross-linker to produce the cis isomer recovered the folded, active state of the protein. This work shows that structure-based introduction of switchable cross-linkers is a feasible approach for photocontrol of folding/unfolding of globular proteins.
AB - Photoswitchable proteins offer exciting prospects for remote control of biochemical processes. We propose a general approach to the design of photoswitchable proteins based on the introduction of a photoswitchable intramolecular cross-linker. We chose, as a model, a FynSH3 domain for which the free energy of folding is less than the energy available from photoisomerization of the cross-linker. Taking the experimentally determined structure of the folded protein as a starting point, mutations were made to introduce pairs of Cys residues so that the distance between Cys sulfur atoms matches the ideal length of the cis form, but not the trans form, of the cross-linker. When the trans cross-linker was introduced into this L3C-L29C-T47AFynSH3 mutant, the protein was destabilized so that folded and unfolded forms coexisted. Irradiation of the cross-linker to produce the cis isomer recovered the folded, active state of the protein. This work shows that structure-based introduction of switchable cross-linkers is a feasible approach for photocontrol of folding/unfolding of globular proteins.
UR - http://www.scopus.com/inward/record.url?scp=67849095782&partnerID=8YFLogxK
U2 - 10.1021/ja807938v
DO - 10.1021/ja807938v
M3 - Article
C2 - 19170498
AN - SCOPUS:67849095782
SN - 0002-7863
VL - 131
SP - 2283
EP - 2289
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 6
ER -