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This DNA is distinguished by a base, found nowhere else, that undergoes a different type of base pairing. Diaminopurine, awkwardly abbreviated as Z, is structurally similar to the adenine (A ...
The discovery of Hoogsteen base pairs, an alternative pairing mode to the canonical Watson–Crick structure, has significantly broadened our understanding of DNA dynamics. This conformation, in ...
Bacteria engineered to copy DNA with synthetic base pairs Opens the door to expanding the genetic code in living creatures.
Base pairs are the fundamental units of nucleic acids, formed by complementary nucleobases bound by hydrogen bonds. They play crucial roles in genetics, DNA structure, and biotechnology applications.
Scientists have taken another step towards putting two additional letters in the dictionary of life to work. Researchers at the Scripps Institute have engineered cells to successfully transcribe a ...
Chances are you've seen an illustration of DNA's double-helix structure and even pictures of the chromosomes that make up the human genome. But where and how does the famous double helix fit into ...
There are several interactions present within a strand (intrastrand interactions) and between two strands (interstrand) that stabilize DNA.
I recently learned about a company called Vinome that connects people with wine based on an analysis of their DNA. The process works similarly to 23andMe—share a spit sample via a collection kit ...
Advances in gene editing have brought us ever closer to fixing some of the most devastating diseases of our time, such as progeria and sickle cell disease.
Thymine (T) is a key nucleobase in DNA, forming base pairs with adenine and contributing to the genetic code. Learn about its structure, properties, and biological significance.
DNA with three or more base pairs could find broad applications in a number of fields, including biotechnology, medicine, data storage, and security.