Cell-free biology is increasingly utilized for engineering biological systems, incorporating novel functionality, and circumventing many of the complications associated with cells. The central dogma describes the information flow in biology consisting of transcription and translation steps to decode genetic information. Aminoacyl-tRNA synthetases (AARSs) and tRNAs are key components involved in translation and thus protein synthesis. This review provides information on AARS and tRNA biochemistry, their role in the translation process, summarizes progress in cell-free engineering of tRNAs and AARSs, and discusses prospects and challenges lying ahead in cell-free engineering
There are many approaches to introduce non-native functionality into proteins either translationally...
Genetic code expansion and reprogramming methodologies allow us to incorporate non-canonical amino a...
Synthetic biology holds promise to revolutionize the life sciences and biomedicine via expansion of ...
Cell-free biology is increasingly utilized for engineering biological systems, incorporating novel f...
Aminoacyl-tRNA synthetases (ARSs) are enzymes that translate the genetic code by adding amino acids ...
AbstractA significant challenge in the field of in vitro synthetic biology is the construction of a ...
acid. The accurate synthesis of proteins, dictated by the corresponding nucleotide sequence encoded ...
The aminoacyl-tRNA synthetases are an essential and universally distributed family of enzymes that p...
The accurate synthesis of proteins, dictated by the corresponding nucleotide sequence encoded in mRN...
The ability to recognize tRNA identities is essential to the function of the genetic coding system. ...
Aminoacyl-tRNA synthetases (aaRS) are at the heart of modern translation, catalyzing the accurate bi...
Aminoacyl-tRNAs (aa-tRNAs) are simple molecules with a single purpose—to serve as substrates for tra...
A critical step in gene expression is the faithful translation of protein from messenger RNA. This p...
Genetic incorporation of noncanonical amino acids (ncAAs) has become a powerful tool to enhance exis...
bS Supporting Information Incorporation of Uaas into proteins using a host’s endogenoustranslation m...
There are many approaches to introduce non-native functionality into proteins either translationally...
Genetic code expansion and reprogramming methodologies allow us to incorporate non-canonical amino a...
Synthetic biology holds promise to revolutionize the life sciences and biomedicine via expansion of ...
Cell-free biology is increasingly utilized for engineering biological systems, incorporating novel f...
Aminoacyl-tRNA synthetases (ARSs) are enzymes that translate the genetic code by adding amino acids ...
AbstractA significant challenge in the field of in vitro synthetic biology is the construction of a ...
acid. The accurate synthesis of proteins, dictated by the corresponding nucleotide sequence encoded ...
The aminoacyl-tRNA synthetases are an essential and universally distributed family of enzymes that p...
The accurate synthesis of proteins, dictated by the corresponding nucleotide sequence encoded in mRN...
The ability to recognize tRNA identities is essential to the function of the genetic coding system. ...
Aminoacyl-tRNA synthetases (aaRS) are at the heart of modern translation, catalyzing the accurate bi...
Aminoacyl-tRNAs (aa-tRNAs) are simple molecules with a single purpose—to serve as substrates for tra...
A critical step in gene expression is the faithful translation of protein from messenger RNA. This p...
Genetic incorporation of noncanonical amino acids (ncAAs) has become a powerful tool to enhance exis...
bS Supporting Information Incorporation of Uaas into proteins using a host’s endogenoustranslation m...
There are many approaches to introduce non-native functionality into proteins either translationally...
Genetic code expansion and reprogramming methodologies allow us to incorporate non-canonical amino a...
Synthetic biology holds promise to revolutionize the life sciences and biomedicine via expansion of ...