Великий квест. Гении и безумцы в поиске истоков жизни на Земле
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Van’t Hoff J. H. Voorstel tot Uitbreiding der Tegenwoordige in de Scheikunde gebruikte Structuurformules in de Ruimte. Pamphlet published by the author. 1874.
Le Bel J. A. Sur les relations qui existent entre les formules atomiques des corps organiques et le pouvoir rotatoire de leurs dissolutions. Bulletin de la Societe Chimique de Paris, vol. 22, pp. 337–347. 1874.
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Кроме того, хиральные молекулы
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Joyce G. F. et al. The case for an ancestral genetic system involving simple analogues of the nucleotides. PNAS, vol. 84, iss. 13, pp. 4398–4402. 1987.
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Несколько разочаровывает то, что его второе имя было Чарльз, а не Фрейзер или Фродо.
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Nabarro F. R. N., Nye J. F. Sir (Frederick) Charles Frank. Biographical Memoirs of Fellows of the Royal Society, vol. 46, pp. 177–196. 2000.
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Frank F. C. On spontaneous asymmetric synthesis. Biochimica et Biophysica Acta, vol. 11, iss. 4, pp. 459–463. 1953.
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Алканол, о котором идет речь, – 2-метил-1- (5-пиримидил) пропанол-1, но мы лучше будем говорить просто “алканол”.
429
Soai K. et al. Asymmetric autocatalysis and amplification of enantiomeric excess of a chiral molecule. Nature, vol. 378, iss. 6559, pp. 767–768. 1995.
430
По словам самой Блэкмонд, в ее карьере произошел переход “от катализа авто к автокатализу”.
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Blackmond D. G. et al. Origins of asymmetric amplification in autocatalytic alkylzinc additions. Journal of the American Chemical Society, vol. 123, iss. 41, pp. 10103–10104. 2001.
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Lee T. D., Yang C. N. Question of Parity Conservation in Weak Interactions. Physical Review, vol. 104, iss. 1, pp. 254–258. 1956.
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Wu C. S. et al. Experimental Test of Parity Conservation in Beta Decay. Physical Review, vol. 105, iss. 4, pp. 1413–1415. 1957.
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Yamagata Y. A hypothesis for the asymmetric appearance of biomolecules on earth. Journal of Theoretical Biology, vol. 11, iss. 3, pp. 495–498. 1966.
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Kondepudi D. K., Nelson G. W. Weak neutral currents and the origin of biomolecular chirality. Nature, vol. 314, iss. 6010, pp. 438–441. 1985.
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Quack M. How Important is Parity Violation for Molecular and Biomolecular Chirality? Angewandte Chemie, vol. 41, iss. 24, pp. 4618–4630. 2002.
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Kondepudi D. K. et al. Chiral Symmetry Breaking in Sodium Chlorate Crystallization. Science, vol. 250, iss. 4983, pp. 975–976. 1990.
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Blackmond D. G. The Origin of Biological Homochirality. Cold Spring Harbor Perspectives in Biology, vol. 2, iss. 5, a002147. 2010.
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Viedma C. Chiral Symmetry Breaking During Crystallization: Complete Chiral Purity Induced by Nonlinear Autocatalysis and Recycling. Physical Review Letters, vol. 94, iss. 6, art. 065504. 2005.
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Noorduin W. L. et al. Emergence of a Single Solid Chiral State from a Nearly Racemic Amino Acid Derivative. Journal of the American Chemical Society, vol. 130, iss. 4, pp. 1158–1159. 2008.
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Viedma C. et al. Evolution of Solid Phase Homochirality for a Proteinogenic Amino Acid. Journal of the American Chemical Society, vol. 130, iss. 46, pp. 15274–15275. 2008.