TY - JOUR
T1 - Fine-Tuning Protein Self-Organization by Orthogonal Chemo-Optogenetic Tools
AU - Sun, Huan
AU - Jia, Haiyang
AU - Ramirez-Diaz, Diego A.
AU - Budisa, Nediljko
AU - Schwille, Petra
N1 - Publisher Copyright:
© 2020 The Authors. Angewandte Chemie International Edition published by Wiley-VCH GmbH
PY - 2021/2/23
Y1 - 2021/2/23
N2 - A universal gain-of-function approach for the spatiotemporal control of protein activity is highly desirable when reconstituting biological modules in vitro. Here we used orthogonal translation with a photocaged amino acid to map and elucidate molecular mechanisms in the self-organization of the prokaryotic filamentous cell-division protein (FtsZ) that is highly relevant for the assembly of the division ring in bacteria. We masked a tyrosine residue of FtsZ by site-specific incorporation of a photocaged tyrosine analogue. While the mutant still shows self-assembly into filaments, dynamic self-organization into ring patterns can no longer be observed. UV-mediated uncaging revealed that tyrosine 222 is essential for the regulation of the protein's GTPase activity, self-organization, and treadmilling dynamics. Thus, the light-mediated assembly of functional protein modules appears to be a promising minimal-regulation strategy for building up molecular complexity towards a minimal cell.
AB - A universal gain-of-function approach for the spatiotemporal control of protein activity is highly desirable when reconstituting biological modules in vitro. Here we used orthogonal translation with a photocaged amino acid to map and elucidate molecular mechanisms in the self-organization of the prokaryotic filamentous cell-division protein (FtsZ) that is highly relevant for the assembly of the division ring in bacteria. We masked a tyrosine residue of FtsZ by site-specific incorporation of a photocaged tyrosine analogue. While the mutant still shows self-assembly into filaments, dynamic self-organization into ring patterns can no longer be observed. UV-mediated uncaging revealed that tyrosine 222 is essential for the regulation of the protein's GTPase activity, self-organization, and treadmilling dynamics. Thus, the light-mediated assembly of functional protein modules appears to be a promising minimal-regulation strategy for building up molecular complexity towards a minimal cell.
KW - FtsZ
KW - bottom-up reconstitution
KW - chemo-optogenetic tools
KW - genetic code expansion
KW - membranes
KW - synthetic biology
UR - http://www.scopus.com/inward/record.url?scp=85099054157&partnerID=8YFLogxK
U2 - 10.1002/anie.202008691
DO - 10.1002/anie.202008691
M3 - Article
C2 - 33155720
AN - SCOPUS:85099054157
SN - 1433-7851
VL - 60
SP - 4501
EP - 4506
JO - Angewandte Chemie - International Edition
JF - Angewandte Chemie - International Edition
IS - 9
ER -