The Photochemistry of Purine in Ice Analogs Relevant to Dense Interstellar Clouds - NASA Technical Reports Server (NTRS) NTRS NTRS - NASA Technical Reports Server Search more_vert Collections About News Help Login Press Enter or click the Search button to begin your search. Back to Results The Photochemistry of Purine in Ice Analogs Relevant to Dense Interstellar Clouds The aromatic nitrogen heterocyclic compound purine is the core structural framework of many important biomolecules, particularly nucleobases.
Purine and purine derivatives have been observed in carbonaceous chondrites, and it has been hypothesized that the exogenous delivery of these compounds, along with many other biologically relevant compounds, may have played a role in the emergence of life. Numerous experiments in our laboratory have demonstrated that the nucleobases used by life to encode genetic material could have been produced abiotically under astrophysically relevant conditions.
Specifically, the UV photoprocessing of pyrimidine and purine in simple ices of astrophysical interest has resulted in the production of all five biological nucleobases, namely, uracil (RNA), cytosine (RNA and DNA), thymine (DNA), adenine (RNA and DNA), and guanine (RNA and DNA). Additionally, follow-up work has examined the photochemistry of pyrimidine in more complex astrophysical ice mixtures to better understand the formation of these compounds under realistic conditions. In this work, we examine the photochemistry of purine in more complex ices of astrophysical interest and compare our results with those from simpler ice mixtures.
We also examine the effects of competing parallel synthesis of organic compounds in the ices (unrelated to purine). Finally, we discuss the astrophysical and astrobiological implications of our findings.
Purine Bases | Springer Nature Link
# Purine Bases
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Encyclopedia of Astrobiology
## Keywords
Adenine, guanine, hypoxanthine, nitrogen heterocycle, xanthine
## Definition
A purine is an aromatic heterocyclic nitrogen compound, composed of a pyrimidine ring system fused to an imidazole ring system, with the core molecular formula C5H4N4. Purines are weakly basic compounds. Purines are stabilized by resonance among the atoms in the ring structure, which gives most of the bonds a partial double bond character. As a result, purines are nearly planar molecules with a slight pucker and are characterized by a strong UV absorption typically near 260 nm. Purine bases may exist in different tautomeric forms depending on the pH. At neutral pH, purines are hydrophobic and therefore relatively insoluble. Substituted purines are components of ribonucleic acids (RNA), deoxyribonucleic acids (DNA), and coenzymes and are broadly distributed in nature.
## Overview
Purines consist of a six-membered pyrimidine ring fused to a five-membered imidazole ring. Purines (along with pyrimidines) serve...
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Structure–activity features of purines and their receptors: implications in cell physiopathology | Molecular Biomedicine | Springer Nature Link
# Structure–activity features of purines and their receptors: implications in cell physiopathology
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- Published: 26 January 2022
- Volume 3, article number 5 (2022)
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## Abstract
The purine molecular structure consists of fused pyrimidine and imidazole rings. Purines are main pieces that conform the structure of nucleic acids which rule the inheritance processes. Purines also work as metabolic intermediates in different cell functions and as messengers in the signaling pathways throughout cellular communication. Purines, mainly ATP and adenosine (ADO), perform their functional and pharmacological properties because of their structural/chemical characteristics that make them either targets of mutagenesis, mother frameworks for designing molecules with controlled effects (e.g. anti-cancer), or chemical donors (e.g., of methyl groups, which represent a potential chemoprotective action against ca
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