tunesoreo.blogg.se

Residence hemera nantes
Residence hemera nantes











residence hemera nantes

Siegel JS (1998) The homochiral imperative of molecular evolution. Sczepanski JT, Joyce GF (2014) A cross-chiral RNA polymerase ribozyme. Quack M (2002) How important is parity violation for molecular and biomolecular chirality? Angew Chem Int Ed Engl 41:4618–4630 Powner MW, Gerland B, Sutherland JD (2009) Synthesis of activated pyrimidine ribonucleotides in prebiotically plausible conditions. Perry RH, Wu C, Nefliu M, Cooks RG (2007) Serine sublimes with spontaneous chiral amplification. Noorduin WL, Izumi T, Millemaggi A, Leeman M, Meekes H, Van Enckevort WJ, Kellogg RM, Kaptein B, Vlieg E, Blackmond DG (2008) Emergence of a single solid chiral state from a nearly racemic amino acid derivative. Morowitz M (1969) A mechanism for the amplification of fluctuations in racemic mixtures. Mislow K (1965) Introduction to stereochemistry. Clay and Sons, London, p 619 (The lectures were presented in 18 at Johns Hopkins University, Baltimore) Thomson) (1904) Baltimore lectures on molecular dynamics and the wave theory of light.

residence hemera nantes

Levine M, Kenesky CS, Mazori D, Breslow R (2008) Enantioselective synthesis and enantiomeric amplification of amino acids under prebiotic conditions. Kondepudi DK, Kaufman RJ, Singh N (1990) Chiral symmetry breaking in sodium chlorate crystallization. Klussmann M, Iwamura H, Mathew SP, Wells DH Jr, Pandya U, Armstrong A, Blackmond DG (2006b) Thermodynamic control of asymmetric amplification in amino acid catalysis. Klussmann K, White AJP, Armstrong A, Blackmond DG (2006a) Rationalization and prediction of solution enantiomeric excess in ternary phase systems. Hein JE, Tse E, Blackmond DG (2011) A route to enantiopure RNA precursors from nearly racemic starting materials. Hein JE, Blackmond DG (2012) On the origin of single chirality of amino acids and sugars in biogenesis. Chem Commun 43:2578–2580įrank FC (1953) On spontaneous asymmetric synthesis. Angew Chem Int Ed Engl 5:385–415įletcher SP, Jagt RBC, Feringa BL (2007) An astrophysically-relevant mechanism for amino acid enantiomer enrichment. Chem Soc Rev 41:5459–5472Ĭahn RS, Ingold C, Prelog V (1966) Specification of molecular chirality. PNAS 107:5723–5725īurton AS, Stern JS, Elsila JE, Glavin DP, Dworkin JP (2012) Understanding prebiotic chemistry through the analysis of extraterrestrial amino acids and nucleobases in meteorites. PNAS 106:9144–9146īreslow R, Cheng Z-L (2010) L-amino acids catalyze the formation of an excess of d-glyceraldehyde, and thus of other d sugars, under credible prebiotic conditions. Birkauser Verlag, Basel, pp 159–188īreslow R, Cheng Z-L (2009) On the origin of terrestrial homochirality for nucleosides and amino acids. In: Jolles P (ed) D-amino acids in sequences of secreted peptides of mulicellular organisms. Cold Spring Harbor Perspect Biol 2(5):a002147īonner W (1998) Homochirality and life. PNAS 101:5732–5736īlackmond DG (2010) The origin of biological homochirality. Chem World 4:30–31īlackmond DG (2004) Asymmetric autocatalysis and its implications for the origin of homochirality.













Residence hemera nantes