Supramolecular catalysis by recognition-encoded oligomers: discovery of a synthetic imine polymerase

被引:12
作者
Gabrielli, Luca [1 ,2 ]
Hunter, Christopher A. [1 ]
机构
[1] Univ Cambridge, Dept Chem, Lensfield Rd, Cambridge CB2 1EW, England
[2] Univ Padua, Dept Chem, Via F Marzolo 1, I-35131 Padua, Italy
基金
欧盟地平线“2020”;
关键词
CHEMICAL ETIOLOGY; NUCLEIC-ACIDS; IN-VITRO; POLYMERIZATION; DNA; HELIX; NUCLEOSIDES; BACKBONES; EVOLUTION; EFFICIENT;
D O I
10.1039/d0sc02234a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
All key chemical transformations in biology are catalysed by linear oligomers. Catalytic properties could be programmed into synthetic oligomers in the same way as they are programmed into proteins, and an example of the discovery of emergent catalytic properties in a synthetic oligomer is reported. Dynamic combinatorial chemistry experiments designed to study the templating of a recognition-encoded oligomer by the complementary sequence have uncovered an unexpected imine polymerase activity. Libraries of equilibrating imines were formed by coupling diamine linkers with monomer building blocks composed of dialdehydes functionalised with either a trifluoromethyl phenol (D) or phosphine oxide (A) H-bond recognition unit. However, addition of theAAAtrimer to a mixture of the phenol dialdehyde and the diamine linker did not template the formation of theDDDoligo-imine. Instead,AAAwas found to be a catalyst, leading to rapid formation of long oligomers ofD.AAAcatalysed a number of different imine formation reactions, but a complementary phenol recognition group on the aldehyde reaction partner is an essential requirement. Competitive inhibition by an unreactive phenol confirmed the role of H-bonding in substrate recognition.AAAaccelerates the rate of imine formation in toluene by a factor of 20. The kinetic parameters for this enzyme-like catalysis are estimated as 1 x 10(-3)s(-1)fork(cat)and the dissociation constant for substrate binding is 300 mu M. The correspondingDDDtrimer was found to catalyse oligomerisation the phosphine oxide dialdehyde with the diamine linker, suggesting an important role for the backbone in catalysis. This unexpected imine polymerase activity in a duplex-forming synthetic oligomer suggests that there are many interesting processes to be discovered in the chemistry of synthetic recognition-encoded oligomers that will parallel those found in natural biopolymers.
引用
收藏
页码:7408 / 7414
页数:7
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