10monon MSN
Analyzing diversity of reverse-transcriptase-containing viruses through global metagenomics
Viral reverse transcriptase (RT) plays a critical role in replication (e.g., retroviruses, that reverse transcribe RNA ...
HIV-1 reverse transcriptase inhibitors remain a cornerstone of antiretroviral therapy, targeting the enzyme responsible for converting viral RNA into DNA. This class of drugs, particularly nucleoside ...
The findings were published in the journal Nature ("Structural basis for pegRNA-guided reverse transcription by the prime editor"). Overall structure of the prime editor complex. (Image: The ...
Partnership delivers advanced reverse transcriptase technology to enhance sensitivity, robustness and reproducibility of molecular analysis in clinical, applied and pharmaceutical applications Promega ...
New England Biolabs (NEB®) announced today that they have released a novel, thermostable reverse transcriptase, WarmStart® RTx Reverse Transcriptase, specifically designed for nucleic acid detection.
After 48 weeks of treatment, TPN-101 reduced the levels of neurofilament light chain and interleukin 6, both key biomarkers of neurodegeneration and neuroinflammation in PSP. The Food and Drug ...
Genetic information usually travels down a one-way street: genes written in DNA serve as the template for making RNA molecules, which are then translated into proteins. That tidy textbook story got a ...
Joint research led by Yutaro Shuto, Ryoya Nakagawa, and Osamu Nureki of the University of Tokyo determined the spatial structure of various processes of a novel gene-editing tool called "prime editor.
Alzheimer's disease is the most common cause of dementia and affects more than a tenth of Americans aged 65 and older. The disease has proven difficult to develop new treatments for, and available ...
Viral reverse transcriptase (RT) plays a critical role in replication (e.g., retroviruses, that reverse transcribe RNA templates into complementary DNA) and genome mutations (e.g., ...
Joint research led by Yutaro Shuto, Ryoya Nakagawa, and Osamu Nureki of the University of Tokyo determined the spatial structure of various processes of a novel gene-editing tool called “prime editor.
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