We report a quantum chemical characterization of the non-natural (synthetic) H-bonded base pair formed by 6-amino-5-nitro-2(1H)-pyridone (Z) and 2-aminoimidazo[1,2-a]-1,3,5-triazin-4(8H)-one (P). The Z:P base pair, orthogonal to the classical G:C base pair, has been introduced into DNA molecules to expand the genetic code. Our results indicate that the Z:P base pair closely mimics the G:C base pair in terms of both structure and stability. To clarify the role of the NO2 group on the C5 position of the Z base, we compared the stability of the Z:P base pair with that of base pairs having different functional groups at the C5 position of Z. Our results indicate that the electron-donating/-withdrawing properties of the group on C5 have a clear ...
Expanded genetic systems are most likely to work with natural enzymes if the added nucleotides pair ...
A goal of synthetic biology is to develop new nucleobases that retain the desirable properties of na...
The guanine radical cation (G(.+)) deprotonates at its N1-site to give the neutral radical G(-H)(.)....
We report a quantum chemical characterization of the non-natural (synthetic) H-bonded base pair form...
We report a quantum chemical characterization of the non-natural (synthetic) H-bonded base pair form...
We report a quantum chemical characterization of the non-natural (synthetic) H-bonded base pair form...
We report a quantum chemical characterization of the non-natural (synthetic) H-bonded base pair form...
We have theoretically analyzed the hydrogen bonding of two artificial nucleobases (3- and 5-methyl-6...
To artificially expand the genetic information system and to realize artificial life, it is necessar...
Expanded genetic systems are most likely to work with natural enzymes if the added nucleotides pair ...
<div><p>This paper is a logical continuation of the theoretical survey of the CH⋯O/N specific contac...
The work summarized in the following report includes a number of conclusions. Both damaged and natur...
Expanded genetic systems are most likely to work with natural enzymes if the added nucleotides pair ...
The hydrogen bonding patterns in the adenine-thymine (A-T) and guanine-cytosine (G-C) base pairs for...
Expanded genetic systems are most likely to work with natural enzymes if the added nucleotides pair ...
Expanded genetic systems are most likely to work with natural enzymes if the added nucleotides pair ...
A goal of synthetic biology is to develop new nucleobases that retain the desirable properties of na...
The guanine radical cation (G(.+)) deprotonates at its N1-site to give the neutral radical G(-H)(.)....
We report a quantum chemical characterization of the non-natural (synthetic) H-bonded base pair form...
We report a quantum chemical characterization of the non-natural (synthetic) H-bonded base pair form...
We report a quantum chemical characterization of the non-natural (synthetic) H-bonded base pair form...
We report a quantum chemical characterization of the non-natural (synthetic) H-bonded base pair form...
We have theoretically analyzed the hydrogen bonding of two artificial nucleobases (3- and 5-methyl-6...
To artificially expand the genetic information system and to realize artificial life, it is necessar...
Expanded genetic systems are most likely to work with natural enzymes if the added nucleotides pair ...
<div><p>This paper is a logical continuation of the theoretical survey of the CH⋯O/N specific contac...
The work summarized in the following report includes a number of conclusions. Both damaged and natur...
Expanded genetic systems are most likely to work with natural enzymes if the added nucleotides pair ...
The hydrogen bonding patterns in the adenine-thymine (A-T) and guanine-cytosine (G-C) base pairs for...
Expanded genetic systems are most likely to work with natural enzymes if the added nucleotides pair ...
Expanded genetic systems are most likely to work with natural enzymes if the added nucleotides pair ...
A goal of synthetic biology is to develop new nucleobases that retain the desirable properties of na...
The guanine radical cation (G(.+)) deprotonates at its N1-site to give the neutral radical G(-H)(.)....