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tag alan turing genetics genomics

Advances in the functional characterization of newly discovered microproteins hint at their diverse roles  in health and disease
The Dark Matter of the Human Proteome
Annie Rathore | Apr 1, 2019 | 10 min read
Advances in the functional characterization of newly discovered microproteins hint at diverse roles in health and disease.
Genetic Parasites and a Whole Lot More
Barry Palevitz | Oct 15, 2000 | 10+ min read
Photo: Ori Fragman, Hebrew University Hordeum spontaneum, the plant studied for BARE-1 retroelements. With genome sequences arriving almost as regularly as the morning paper, the public's attention is focused on genes--new genes to protect crops against pests; rogue genes that make bacteria resistant to antibiotics; faulty genes that, if fixed, could cure diseases such as muscular dystrophy. What many people don't realize is that genes account for only part of an organism's DNA, and in many c
Will Genomics Spoil Gene Ownership?
Douglas Steinberg | Sep 3, 2000 | 8 min read
Consider a scenario for the year 2002: Using commercially available software, bioprospector "Craig Collins" spends a day scavenging the Human Genome Project (HGP) database for the alternatively spliced genes prized by Wall Street. He enters the sequences of several candidate genes into a software package that prints out the likely functions of their protein products. One protein looks like it could be pharmaceutical paydirt, so he isolates the corresponding cDNA, inserts it into a vector, then
Research Briefs
Maria Anderson | Oct 19, 2003 | 4 min read
Research Briefs New Genes: The Ears Have 'Em; The Worker, The Soldier, The Candlestick Maker; For Genomes Without Borders, Biobanks Unite New genes: The ears have 'em While scouring a new cDNA library, researchers in the Netherlands discovered 80 novel expressed-sequence tags, including 25 preferentially expressed in human fetal cochlea.1 The researchers from the University Medical Center in Nijmegen (UMCN) found that 155 ESTs map to loci for nonsyndromic deafness, which is not associated
Influential Consortium's cDNA Clones Praised As Genome Research Time-Saver
Karen Young Kreeger | May 14, 1995 | 7 min read
IMAGE group's DNA libraries are made freely available to other researchers, as long as they, too, pass on information to the public. In less than two years, a research initiative begun by four geneticists has grown from an ad hoc collaboration to an international cooperative effort to freely share complementary DNA (cDNA) clone libraries. To date, in excess of 100,000 clones from the Integrated Molecular Analysis of Genome Expression (IMAGE) Consortium have been sent to more than 40 facilities
Bacteria Harbor Geometric “Organelles”
Amber Dance | Dec 1, 2018 | 10+ min read
Microbes, traditionally thought to lack organelles, get a metabolic boost from geometric compartments that act as cauldrons for chemical reactions. Bioengineers are eager to harness the compartments for their own purposes.
Eat Yourself to Live: Autophagy’s Role in Health and Disease
Vikramjit Lahiri and Daniel J. Klionsky | Mar 1, 2018 | 10+ min read
New details of the molecular process by which our cells consume themselves point to therapeutic potential.
Top 10 Innovations 2016
The Scientist | Dec 1, 2016 | 10+ min read
This year’s list of winners celebrates both large leaps and small (but important) steps in life science technology.
The Network Within
Melissa Lee Philips | Jul 1, 2006 | 7 min read
Ilya Shmulevich brings creative computation to deciphering gene regulation
Methylation: Gene Expression at the Right Place and Right Time
Nadia Halim | Dec 5, 1999 | 7 min read
Courtesy of Richard Roberts, New England BiolabsModel methylation reaction: Cytosine nucleotide (red) is flipped out of the DNA double helix by a methyltransferase (white), so it can be methylated. The end product after the methyl group has been transferred to the DNA is pictured in green. A tenuous link between DNA methylation and development has existed for several years. Now findings substantiate the connection. Researchers have found the first human diseases caused by defects in the DNA meth

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