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tag bioluminescence microbiology genetics genomics neuroscience

Haydeh Payami is wearing a purple dress and an orange and pink scarf and standing in front of a whiteboard.
A Microbial Link to Parkinson’s Disease
Mariella Bodemeier Loayza Careaga, PhD | Dec 4, 2023 | 6 min read
Haydeh Payami helped uncover the genetic basis of Parkinson’s disease. Now, she hopes to find new ways to treat the disease by studying the gut microbiome.
Researchers in George Church&rsquo;s lab modified wild type ADK proteins (left) in <em >E.coli</em>, furnishing them with an nonstandard amino acid (nsAA) meant to biocontain the resulting bacterial strain.
A Pioneer of The Multiplex Frontier
Rashmi Shivni, Drug Discovery News | May 20, 2023 | 10 min read
George Church is at it again, this time using multiplex gene editing to create virus-proof cells, improve organ transplant success, and protect elephants.
Top 10 Innovations 2012
The Scientist | Dec 1, 2012 | 10+ min read
The Scientist’s 5th installment of its annual competition attracted submissions from across the life science spectrum. Here are the best and brightest products of the year.
Top 10 Innovations 2013
The Scientist | Dec 1, 2013 | 10+ min read
The Scientist’s annual competition uncovered a bonanza of interesting technologies that made their way onto the market and into labs this year.
Notebook
Steve Bunk | Nov 7, 1999 | 7 min read
Content Jumping DNA Semen pharming Screening for heart risk Real-time signaling PubSCIENCE starts, PubMedCentral grows When time stands still Shutting down the pump Brain gain JUMPING DNA Mutations aren't transmitted only by inheritance--they can cross species, too, according to recent findings by John F. McDonald, head of the genetics department at the University of Georgia (I.K. Jordan et al., "Evidence for the recent horizontal transfer of long terminal repeat retrotransposon," Proceedings of
TS 2015 Gift Guide
Kerry Grens | Dec 14, 2015 | 3 min read
Check out these life science–inspired gifts
A Thousand Points of Light
Bob Sinclair | Oct 15, 2000 | 10+ min read
Not so long ago, researchers had somewhat limited choices for locating and following a particular piece of DNA. A probe could be labeled using radioactivity, by kinasing an end or nick-translating the whole piece. A fragment of interest could be visualized (along with all other DNA and RNA species in the preparation) using ethidium bromide. With sufficient skill and patience an investigator could obtain from these rather crude techniques fairly impressive information, such as the precise 5' end

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