The origin of homochirality and its role in the development of life on Earth are among the most intriguing questions in science. It has been suggested that carbonaceous chondrites seeded primitive Earth with the initial organic compounds necessary for the origin of life. One of the strongest pieces of evidence supporting this theory is that certain amino acids in carbonaceous chondrites display a significant L-enantiomeric excess (ee), similar to those use by terrestrial life. Analyses of ee in meteoritic molecules other than amino acids would shed more light on the origins of homochirality. In this study we investigated the stereochemistry of two groups of compounds: (1) free monocarboxylic acids (MCAs) from CM2 meteorites LON 94101 and Mu...
Biology exhibits homochirality, in that only one of two possible molecular configurations (called en...
Carbonaceous meteorites provide the best glimpse into the solar system’s earliest physical and...
The organic compounds found in carbonaceous chondrite meteorites provide insight into primordial sol...
Carbonaceous Chondrite (CC) meteorites are fragments of asteroids, solar planetesimals that never be...
Enantiomerically-enriched hydroxycarboxylic acids have been found in meteorites, but the possible or...
Homochirality of amino acids in proteins and sugars in DNA and RNA is a critical feature of life on ...
The water-soluble organic compounds in carbonaceous chondrite meteorites constitute a record of the ...
Chiral and carbon-isotopic analyses of isovaline have been carried out on numerous samples of the Mu...
International audienceIn the laboratory, the photo-and thermochemical evolution of ices, made of sim...
Peptides from chiral, C\u3b1-methylated \u3b1-amino acids (see scheme) found in l enantiomeric exces...
The origin of biomolecular homochirality is a longstanding mystery. The terrestrial living material ...
The analysis of amino acids in meteorites dates back over 50 years; however, it is only in recent ye...
Current research focuses on a better understanding of the origin of biomolecular asymmetry by the id...
Life on Earth relies on chiral molecules, that is, species not superimposable on their mirror images...
Chirality is the property of objects, including molecules, which are not superimposable on their mat...
Biology exhibits homochirality, in that only one of two possible molecular configurations (called en...
Carbonaceous meteorites provide the best glimpse into the solar system’s earliest physical and...
The organic compounds found in carbonaceous chondrite meteorites provide insight into primordial sol...
Carbonaceous Chondrite (CC) meteorites are fragments of asteroids, solar planetesimals that never be...
Enantiomerically-enriched hydroxycarboxylic acids have been found in meteorites, but the possible or...
Homochirality of amino acids in proteins and sugars in DNA and RNA is a critical feature of life on ...
The water-soluble organic compounds in carbonaceous chondrite meteorites constitute a record of the ...
Chiral and carbon-isotopic analyses of isovaline have been carried out on numerous samples of the Mu...
International audienceIn the laboratory, the photo-and thermochemical evolution of ices, made of sim...
Peptides from chiral, C\u3b1-methylated \u3b1-amino acids (see scheme) found in l enantiomeric exces...
The origin of biomolecular homochirality is a longstanding mystery. The terrestrial living material ...
The analysis of amino acids in meteorites dates back over 50 years; however, it is only in recent ye...
Current research focuses on a better understanding of the origin of biomolecular asymmetry by the id...
Life on Earth relies on chiral molecules, that is, species not superimposable on their mirror images...
Chirality is the property of objects, including molecules, which are not superimposable on their mat...
Biology exhibits homochirality, in that only one of two possible molecular configurations (called en...
Carbonaceous meteorites provide the best glimpse into the solar system’s earliest physical and...
The organic compounds found in carbonaceous chondrite meteorites provide insight into primordial sol...