Primrose’s unique and broad capabilities in nucleic acid engineering, molecular evolution and protein expression allow the company to create powerful manufacturing platforms that address the ...
Primrose Bio’s advanced technology for manufacturing nucleic acids and proteins makes it the partner of choice for pharma companies developing new vaccines, therapeutics and bio-based products.
The nucleic acid molecules inherited by the living cell bear the plan of all the cell's protein molecules. It now appears that another kind of nucleic acid plays a key role in translating the plan ...
Transfer RNA (tRNA) and ribosomal RNA (rRNA) are involved in the translation of mRNA into proteins. Various non-coding RNAs also play important roles in regulating gene expression and cellular ...
View Full Profile. Learn about our Editorial Policies. What is the biggest difference between using nanopore technology for protein sequencing versus nucleic acid sequencing? Protein sequencing is a ...
Used across a wide range of techniques and methods, water quality has a pivotal role in genetics and genomics research. Saliva is a viable alternative source of nucleic acids. A new collection device ...
In the Protein Engineering and Evolution Unit's latest publication in Nucleic Acids Research, the team presents an engineered RNA methyltransferase, which can be used to study the role of RNA ...