© 2020 American Chemical Society. Nature has three biopolymers: oligonucleotides, polypeptides, and oligosaccharides. Each biopolymer has independent functions, but when needed, they form mixed assemblies for higher-order purposes, as in the case of ribosomal protein synthesis. Rather than forming large complexes to coordinate the role of different biopolymers, we dovetail protein amino acids and nucleobases into a single low molecular weight precision polyamide polymer. We established efficient chemical synthesis and de novo sequencing procedures and prepared combinatorial libraries with up to 100 million biohybrid molecules. This biohybrid material has a higher bulk affinity to oligonucleotides than peptides composed exclusively of canoni...
The functionality of natural biopolymers has inspired significant effort to develop sequence-defined...
Peptides and their synthetic analogs are a class of molecules with enormous relevance as therapeutic...
Over the past decade, several methods have been developed for the construction of DNA-encoded peptid...
© 2020 American Chemical Society. Nature has three biopolymers: oligonucleotides, polypeptides, and ...
Nature has evolved sequence-controlled polymers, such as DNA and proteins, over its long history. Th...
High-diversity genetically-encoded combinatorial libraries (108−1013 members) are a rich source of p...
Sequence-defined polymers with customizable sequences, monodispersity, substantial length, and large...
Nucleobase interactions play a fundamental role in biological functions, including transcription and...
In the natural cellular environment, nucleic acid biomolecules like DNA have biological implications...
textFunctional nucleic acids provide insight into the ‘RNA world,’ the proposed period in Earth’s hi...
Background: Nucleobase-bearing peptides and their interaction with DNA and RNA are an important topi...
Methods to evolve synthetic, rather than biological, polymers could significantly expand the functio...
The hydrogen-bonding recognition interactions of nucleobases are a fundamental property of nucleic a...
The lack of efficient identification and isolation methods for specific molecular binders has fundam...
ABSTRACT: Genomic applications of DNA-binding mole-cules require an unbiased knowledge of their high...
The functionality of natural biopolymers has inspired significant effort to develop sequence-defined...
Peptides and their synthetic analogs are a class of molecules with enormous relevance as therapeutic...
Over the past decade, several methods have been developed for the construction of DNA-encoded peptid...
© 2020 American Chemical Society. Nature has three biopolymers: oligonucleotides, polypeptides, and ...
Nature has evolved sequence-controlled polymers, such as DNA and proteins, over its long history. Th...
High-diversity genetically-encoded combinatorial libraries (108−1013 members) are a rich source of p...
Sequence-defined polymers with customizable sequences, monodispersity, substantial length, and large...
Nucleobase interactions play a fundamental role in biological functions, including transcription and...
In the natural cellular environment, nucleic acid biomolecules like DNA have biological implications...
textFunctional nucleic acids provide insight into the ‘RNA world,’ the proposed period in Earth’s hi...
Background: Nucleobase-bearing peptides and their interaction with DNA and RNA are an important topi...
Methods to evolve synthetic, rather than biological, polymers could significantly expand the functio...
The hydrogen-bonding recognition interactions of nucleobases are a fundamental property of nucleic a...
The lack of efficient identification and isolation methods for specific molecular binders has fundam...
ABSTRACT: Genomic applications of DNA-binding mole-cules require an unbiased knowledge of their high...
The functionality of natural biopolymers has inspired significant effort to develop sequence-defined...
Peptides and their synthetic analogs are a class of molecules with enormous relevance as therapeutic...
Over the past decade, several methods have been developed for the construction of DNA-encoded peptid...