Happy New Year! No. 1 Story of 2024: Nobel Prize for Function of “Junk DNA”

Autonomous University of Madrid, Bill Dembski, C. elegans, Current Science, David Coppedge, Evolution, Gary Ruvkun, gene regulation, Intelligent Design, Jonathan Wells, Junk DNA, Karolinska Institutet, microRNA, miRNA, National Cancer Institute, Nicholas Robine, Nobel Committee, Nobel Prize, Richard Sternberg, Robert Sarnovsky, roundworm, Subhash Lakhotia, The Conversation, The Myth of Junk DNA, Victor Ambros
That so-called genetic junk would turn out to be functional was a prediction of intelligent design going back to the 1990s. Source
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Noncoding RNA Research Gaining Ground Over “Junk” Label

biology, Caltech, Christie Wilcox, chromosomes, Debra Silver, Duke University, Eastern Virginia Medical School, ENCODE, Evolution, GENCODE, Gene Yao, genes, Intelligent Design, John Mattick, Junk DNA, lncRNA, miRNA, Mitch Guttman, mRNAs, Nature Methods, ncRNAs, noncoding RNAs, Research, RNA, The Scientist, UC San Diego, University of New South Wales, Vivien Marx
Perhaps it won’t be long before everyone, critics included, looks at the “junk DNA” concept in the rear-view mirror.  Source
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Care for Appetizers? Electric Proteins, Spidey Sense, and More

anatomy, appetizers, Arizona State University, Barry Scott, Biomimetics, centipedes, cilia, electricity, electron transport, gene repression, genes, genomes, Intelligent Design, Irreducible Complexity, Joubert syndrome, Junk DNA, Massachusetts Eye and Ear Infirmary, Massey University, materials science, metabolism, Michael Behe, miRNA, orb webs, photosynthesis, physiology, Siam News, sliders, spiders, Stuart Lindsey, swimming, Tohoku University, University of North Carolina, University of Otago, X-ray crystallography, Zheng-Yi Chen
Welcome to the second day of the New Year! Like tasty sliders, these short news stories should get the juices flowing for big developments in 2020. Electric Proteins Dr. Stuart Lindsey at Arizona State University is an expert in single-molecule dynamics in biomolecules. Older methods of observing protein structure, such as X-ray crystallography, only gave single snapshots of the highly dynamic world, he says, where proteins rapidly change conformations and interact in complex ways. Electron transport has been well known in the cases of photosynthesis and metabolism. But a few years ago, his team was astonished to find that a run-of-the-mill protein conducted electricity. The protein was acting like a wire! Further observations revealed that all proteins conduct electricity — even the ones that had “weren’t designed to do this”—…
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