Nucleic acids display remarkable properties beyond information storage and propagation. The well-understood base pairing rules have enabled nucleic acids to be assembled into nanostructures of ever increasing complexity. Although nanostructures can be constructed using other building blocks, including peptides and lipids, it is the capacity to evolve that sets nucleic acids apart from all other nanoscale building materials. Nonetheless, the poor chemical and biological stability of DNA and RNA constrain their applications. Recent advances in nucleic acid chemistry and polymerase engineering enable the synthesis, replication, and evolution of a range of synthetic genetic polymers (XNAs) with improved chemical and biological stability. We dis...
Xenobiotic nucleic acids (XNA) are nucleic acid analogues not present in nature that can be used for...
The emergence of catalysis in early genetic polymers such as RNA is considered a key transition in t...
The emergence of catalysis in early genetic polymers such as RNA is considered a key transition in t...
Nucleic acids display remarkable properties beyond information storage and propagation. The well-und...
Nucleic acids display remarkable properties beyond information storage and propagation. The well-und...
Nanoscale objects of increasing complexity can be constructed from DNA or RNA. However, the scope of...
Life's diversity is built on the wide range of properties and functions that can be encoded in natur...
abstract: Synthetic genetics is a subdiscipline of synthetic biology that aims to develop artificial...
Life's diversity is built on the wide range of properties and functions that can be encoded in natur...
Nanoscale objects of increasing complexity can be constructed from DNA or RNA. However, the scope of...
Nanoscale objects of increasing complexity can be constructed from DNA or RNA. However, the scope of...
Synthetic genetics is a subdiscipline of synthetic biology that aims to develop artificial genetic p...
Genetic information storage and processing rely on just two polymers, DNA and RNA, yet whether their...
The emergence of catalysis in early genetic polymers like RNA is considered a key transition in the ...
The emergence of catalysis in early genetic polymers like RNA is considered a key transition in the ...
Xenobiotic nucleic acids (XNA) are nucleic acid analogues not present in nature that can be used for...
The emergence of catalysis in early genetic polymers such as RNA is considered a key transition in t...
The emergence of catalysis in early genetic polymers such as RNA is considered a key transition in t...
Nucleic acids display remarkable properties beyond information storage and propagation. The well-und...
Nucleic acids display remarkable properties beyond information storage and propagation. The well-und...
Nanoscale objects of increasing complexity can be constructed from DNA or RNA. However, the scope of...
Life's diversity is built on the wide range of properties and functions that can be encoded in natur...
abstract: Synthetic genetics is a subdiscipline of synthetic biology that aims to develop artificial...
Life's diversity is built on the wide range of properties and functions that can be encoded in natur...
Nanoscale objects of increasing complexity can be constructed from DNA or RNA. However, the scope of...
Nanoscale objects of increasing complexity can be constructed from DNA or RNA. However, the scope of...
Synthetic genetics is a subdiscipline of synthetic biology that aims to develop artificial genetic p...
Genetic information storage and processing rely on just two polymers, DNA and RNA, yet whether their...
The emergence of catalysis in early genetic polymers like RNA is considered a key transition in the ...
The emergence of catalysis in early genetic polymers like RNA is considered a key transition in the ...
Xenobiotic nucleic acids (XNA) are nucleic acid analogues not present in nature that can be used for...
The emergence of catalysis in early genetic polymers such as RNA is considered a key transition in t...
The emergence of catalysis in early genetic polymers such as RNA is considered a key transition in t...