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Marvin Caruthers receives inaugural Merkin Prize in ceremony at the Broad Institute for DNA synthesis technology

Broad Institute

Related links Merkin Prize Inaugural Merkin Prize in Biomedical Technology awarded to Dr. Marvin Caruthers for developing technology that efficiently synthesizes DNA The inaugural Richard N. Caruthers was announced as the winner in June for his development, in 1981, of an efficient, automated technology for synthesizing DNA.

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Day Zero Antivirals for Future Pandemics

Codon

Remdesivir and other broad-spectrum antivirals work by jamming up RNA-dependent RNA polymerase (RdRp), an enzyme that nearly all RNA viruses use to replicate their genomes. Other efforts to build broad-spectrum antivirals have focused on another conserved feature of viruses: double-stranded RNA.

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CRISPR breakthroughs: New solutions for common diseases

Drug Discovery World

Rolf Turk , Senior Manager, Genomics Medicine at Integrated DNA Technologies, examines how CRISPR is being used to enhance cancer therapies. CRISPR diagnostics have successfully detected various pathogens, including RNA viruses (eg. parvovirus B19, Flaviviridae, Ebola, and Coronaviridae), DNA viruses (e.g.,

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TACACICLIB, AUR-102, AURIGENE

New Drug Approvals

May 30; 31(11): 2498-510, 2012). CDK7 also plays a role in transcription and possibly in DNA repair. The trimeric Cak complex CDK7/CyclinH/MATl is also a component of TFIIH, the general transcription/DNA repair factor IIH (Morgan, DO., Mar 23;25(6):839-50. 2007; Ganuza et al., 13, 261-91, 1997). 1004-1014, 2004). Konig et al.,

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A Molecular Portrait of ALS and FTD

Drug Target Review

The specific proteins found in these aggregates can vary, but approximately 95 percent of ALS patients and 50 percent of FTD patients develop aggregates containing the TDP-43 protein (short for tar DNA binding protein 43). 14 TDP-43 is a DNA and RNA binding protein that regulates the expression and splicing of several target transcripts.

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Beyond Steel Tanks

Codon

Water accounts for 70 percent of a bacterium by mass; the other 30 percent includes everything else: proteins, RNA, DNA, lipids, and so on. And given that RNA and lipid nanoparticle synthesis is highly efficient compared to typical bioproduction, it’s likely that the company could have scaled to billions of doses.

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Codon Digest: Hackathon Prize Winners

Codon

DNA sequences are designed on a computer, and it takes a dozen or more clicks to change a single nucleotide. DNA sequences are also checked by hand, so it’s easy to make a mistake. The tool outputs a DNA sequence that encodes all the required enzymes. Anyone who has tried to engineer a cell knows how tedious it can be.

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