Most of the genome is not genes, but another form of genetic information that has come to be known as the genome鈥檚 鈥渄ark matter.鈥 In this episode, we explore how studying this unfamiliar territory could help scientists understand diseases such as ALS.
Read the related story: Dark matter of the genome, part 1
Transcript
AA: Hi! I鈥檓 Andrea
BS: And I鈥檓 Brian
AA: A little while back, we asked you, our fans and friends, to vote on what the name of this podcast should be.
BS: Hundreds of you voted, and at the end, the name Base Pairs came out on top.
AA: But we realized that at least some of our listeners are probably wondering about that name.
BS: Yeah鈥 鈥Base Pairs鈥 does take a little explaining鈥 so that鈥檚 why we鈥檙e here talking to you now.
BS: Base pairs are molecules.
AA: End of explanation.
BS: Yeah, that鈥檚 all we wanted to tell you.
AA: Seriously though, base pairs are way more than just a bunch of molecules. They are the paired molecules that make up DNA and allow it to serve as coded instructions for the cell, kind of like how binary code provides the instructions for computers.
BS: Except it鈥檚 more like a quaternary code 鈥 can you believe that鈥檚 a real word? What a word.
AA: True, it鈥檚 a good one. But yeah, there are these four chemical bases鈥攜ou鈥檝e probably seen them represented with the letters A, T, C, and G鈥攁nd they make up the fundamental 鈥渓anguage鈥 of inheritance.
BS: The instructions a cell needs to function properly are spelled out in the sequence of long strands of these bases.
AA: In DNA, these strands get paired off. Each base is drawn to another, always the same way 鈥
BS: C, Cytosine, always pairs with G, guanine; A, adenine, pairs with T, thymine. So the base pairs that form are C-G and A-T. Combinations of these pairs, all the way across the genome.
AA: And the result is that spiral-staircase-like double-helix structure James Watson and Francis Crick discovered one February morning in 1953.
BS: It鈥檚 absolutely amazing that so much of the complexity of life can be distilled into a simple language with only four letters.
AA: And that鈥檚 a big part of what we aspire to on this podcast: to distill the fascinating but complex research that goes on at Cold Spring Harbor Lab into more simple language. Not dumbed down鈥攋ust streamlined.
BS: Yeah, because for many of us, scientific jargon really might as well be another language. We want to overcome that language barrier to bring you great science stories.
AA: And we invite you, dear listeners, to let us know how we鈥檙e doing by commenting on our blog, at labdish.cshl.edu. There, you鈥檒l also find a great video from our DNA Learning Center of James Watson explaining how tin models of the base aided the discovery of DNA鈥檚 double helix structure.
BS: This is Base Pairs: stories about the power of genetic information鈥 the monthly podcast coming to you from 黑料吃瓜资源. Stay tuned for more science stories.
