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A continuous reaction network that produces RNA precursors
by
Yi, Ruiqin
, Tran, Quoc Phuong
, Cleaves, H. James
, Adam, Zachary R.
, Ali, Sarfaraz
, Fahrenbach, Albert C.
, Yoda, Isao
in
Acetaldehyde - analogs & derivatives
/ Acetaldehyde - chemical synthesis
/ Acetaldehyde - chemistry
/ Amino acids
/ Ammonia
/ Ammonium chloride
/ Carbon sources
/ Chemical evolution
/ Chemical synthesis
/ Chemistry
/ Cyanamide - chemical synthesis
/ Cyanamide - chemistry
/ Evolution, Chemical
/ Gamma Rays
/ Glycolaldehyde
/ Hydroxy acids
/ Imidazoles - chemical synthesis
/ Imidazoles - chemistry
/ Models, Chemical
/ Origin of Life
/ Oxazoles - chemical synthesis
/ Oxazoles - chemistry
/ Photochemistry
/ Physical Sciences
/ Precursors
/ Protocol (computers)
/ Radiolysis
/ Reagents
/ RNA - chemical synthesis
/ RNA - chemistry
/ Sodium chloride
/ Sugar
/ Transcription
/ Water - chemistry
2020
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A continuous reaction network that produces RNA precursors
by
Yi, Ruiqin
, Tran, Quoc Phuong
, Cleaves, H. James
, Adam, Zachary R.
, Ali, Sarfaraz
, Fahrenbach, Albert C.
, Yoda, Isao
in
Acetaldehyde - analogs & derivatives
/ Acetaldehyde - chemical synthesis
/ Acetaldehyde - chemistry
/ Amino acids
/ Ammonia
/ Ammonium chloride
/ Carbon sources
/ Chemical evolution
/ Chemical synthesis
/ Chemistry
/ Cyanamide - chemical synthesis
/ Cyanamide - chemistry
/ Evolution, Chemical
/ Gamma Rays
/ Glycolaldehyde
/ Hydroxy acids
/ Imidazoles - chemical synthesis
/ Imidazoles - chemistry
/ Models, Chemical
/ Origin of Life
/ Oxazoles - chemical synthesis
/ Oxazoles - chemistry
/ Photochemistry
/ Physical Sciences
/ Precursors
/ Protocol (computers)
/ Radiolysis
/ Reagents
/ RNA - chemical synthesis
/ RNA - chemistry
/ Sodium chloride
/ Sugar
/ Transcription
/ Water - chemistry
2020
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A continuous reaction network that produces RNA precursors
by
Yi, Ruiqin
, Tran, Quoc Phuong
, Cleaves, H. James
, Adam, Zachary R.
, Ali, Sarfaraz
, Fahrenbach, Albert C.
, Yoda, Isao
in
Acetaldehyde - analogs & derivatives
/ Acetaldehyde - chemical synthesis
/ Acetaldehyde - chemistry
/ Amino acids
/ Ammonia
/ Ammonium chloride
/ Carbon sources
/ Chemical evolution
/ Chemical synthesis
/ Chemistry
/ Cyanamide - chemical synthesis
/ Cyanamide - chemistry
/ Evolution, Chemical
/ Gamma Rays
/ Glycolaldehyde
/ Hydroxy acids
/ Imidazoles - chemical synthesis
/ Imidazoles - chemistry
/ Models, Chemical
/ Origin of Life
/ Oxazoles - chemical synthesis
/ Oxazoles - chemistry
/ Photochemistry
/ Physical Sciences
/ Precursors
/ Protocol (computers)
/ Radiolysis
/ Reagents
/ RNA - chemical synthesis
/ RNA - chemistry
/ Sodium chloride
/ Sugar
/ Transcription
/ Water - chemistry
2020
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A continuous reaction network that produces RNA precursors
Journal Article
A continuous reaction network that produces RNA precursors
2020
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Overview
Continuous reaction networks, which do not rely on purification or timely additions of reagents, serve as models for chemical evolution and have been demonstrated for compounds thought to have played important roles for the origins of life such as amino acids, hydroxy acids, and sugars. Step-by-step chemical protocols for ribonucleotide synthesis are known, but demonstrating their synthesis in the context of continuous reaction networks remains a major challenge. Herein, compounds proposed to be important for prebiotic RNA synthesis, including glycolaldehyde, cyanamide, 2-aminooxazole, and 2-aminoimidazole, are generated from a continuous reaction network, starting from an aqueous mixture of NaCl, NH₄Cl, phosphate, and HCN as the only carbon source. No well-timed addition of any other reagents is required. The reaction network is driven by a combination of γ radiolysis and dry-down. γ Radiolysis results in a complex mixture of organics, including the glycolaldehyde-derived glyceronitrile and cyanamide. This mixture is then dried down, generating free glycolaldehyde that then reacts with cyanamide/NH₃ to furnish a combination of 2-aminooxazole and 2-aminoimidazole. This continuous reaction network models how precursors for generating RNA and other classes of compounds may arise spontaneously from a complex mixture that originates from simple reagents.
Publisher
National Academy of Sciences
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