Phosphorylation, Oligomerization and Self-assembly in Water Under Potential Prebiotic Conditions
暂无分享,去创建一个
Eun-Kyong Kim | R. Krishnamurthy | Megha Karki | Ramanarayanan Krishnamurthy | Subhendu Bhowmik | Clémentine Gibard | Megha Karki | S. Bhowmik | Eun-Kyong Kim | C. Gibard
[1] M. Powner,et al. Prebiotic synthesis of phosphoenol pyruvate by α-phosphorylation-controlled triose glycolysis , 2016, Nature Chemistry.
[2] S. Benner,et al. Evaporite Borate-Containing Mineral Ensembles Make Phosphate Available and Regiospecifically Phosphorylate Ribonucleosides: Borate as a Multifaceted Problem Solver in Prebiotic Chemistry. , 2016, Angewandte Chemie.
[3] L. Orgel,et al. Urea-Inorganic Phosphate Mixtures as Prebiotic Phosphorylating Agents , 1971, Science.
[4] A. Schoffstall. Prebiotic phosphorylation of nucleosides in formamide , 1976, Origins of life.
[5] Christopher K. W. Chan,et al. Prebiotically plausible oligoribonucleotide ligation facilitated by chemoselective acetylation. , 2013, Nature chemistry.
[6] L. Orgel,et al. Prebiotic Synthesis: Phosphorylation in Aqueous Solution , 1968, Science.
[7] N. Hud,et al. Spontaneous formation and base pairing of plausible prebiotic nucleotides in water , 2016, Nature Communications.
[8] N. Hud,et al. Darwin's Warm Little Pond: A One-Pot Reaction for Prebiotic Phosphorylation and the Mobilization of Phosphate from Minerals in a Urea-Based Solvent. , 2016, Angewandte Chemie.
[9] J. Sutherland,et al. Synthesis of activated pyrimidine ribonucleotides in prebiotically plausible conditions , 2009, Nature.
[10] A. Mulkidjanian,et al. Origins of Life: The Primal Self-Organisation , 2011 .
[11] L. Orgel,et al. Prebiotic Phosphorylation of Thymidine at 65° C in Simulated Desert Conditions , 1972, Nature.
[12] J. Szostak,et al. Exploding vesicles , 2011 .
[13] D. Deamer,et al. Self-assembled vesicles of monocarboxylic acids and alcohols: conditions for stability and for the encapsulation of biopolymers. , 2002, Biochimica et biophysica acta.
[14] D. Lauretta,et al. Aqueous corrosion of phosphide minerals from iron meteorites: a highly reactive source of prebiotic phosphorus on the surface of the early Earth. , 2005, Astrobiology.
[15] U. Steiner,et al. Ribonucleotides and RNA Promote Peptide Chain Growth. , 2017, Angewandte Chemie.
[16] R. Krishnamurthy,et al. Nitrogenous Derivatives of Phosphorus and the Origins of Life: Plausible Prebiotic Phosphorylating Agents in Water , 2017, Life.
[17] L. Orgel,et al. Amino acid dependent formation of phosphate anhydrides in water mediated by carbonyl sulfide. , 2006, Journal of the American Chemical Society.
[18] J. Knowles. Enzyme-catalyzed phosphoryl transfer reactions. , 1980, Annual review of biochemistry.
[19] Daniela Kalafatovic,et al. Exploring the sequence space for (tri-)peptide self-assembly to design and discover new hydrogels. , 2015, Nature chemistry.
[20] H. Watanabe,et al. Volcanic production of polyphosphates and its relevance to prebiotic evolution , 1991, Nature.
[21] A. Eschenmoser,et al. Regioselectiveα-Phosphorylation of Aldoses in Aqueous Solution , 2000 .
[22] J. Bally,et al. Detection of Interstellar PN: The First Identified Phosphorus Compound in the Interstellar Medium , 1987 .
[23] K. Ruiz-Mirazo,et al. Prebiotic systems chemistry: new perspectives for the origins of life. , 2014, Chemical reviews.
[24] A. Eschenmoser. The TNA-Family of Nucleic Acid Systems: Properties and Prospects , 2004, Origins of life and evolution of the biosphere.
[25] H. Lehmann,et al. Zur Hydrolyse der Phosphorsäureamide , 1976 .
[26] Hollis G. Potter,et al. Author Manuscript , 2013 .
[27] Daniel Herschlag,et al. Biological phosphoryl-transfer reactions: understanding mechanism and catalysis. , 2011, Annual review of biochemistry.
[28] P. Caselli,et al. THE FIRST DETECTIONS OF THE KEY PREBIOTIC MOLECULE PO IN STAR-FORMING REGIONS , 2016, Proceedings of the International Astronomical Union.
[29] Katarzyna P. Adamala,et al. Competition between model protocells driven by an encapsulated catalyst. , 2013, Nature chemistry.
[30] Maheen Gull. Prebiotic Phosphorylation Reactions on the Early Earth , 2014 .
[31] J. Lawless,et al. Quantification of monocarboxylic acids in the Murchison carbonaceous meteorite , 1979, Nature.
[32] E. Thilo,et al. Zur Chemie der kondensierten Phosphate und Arsenate. XXXVIII. Amidotriphosphat , 1964 .
[33] D. E. Bryant,et al. Direct evidence for the availability of reactive, water soluble phosphorus on the early Earth. H-phosphinic acid from the Nantan meteorite. , 2006, Chemical communications.
[34] M. Dubois,et al. Swelling limits for bilayer microstructures: the implosion of lamellar structure versus disordered lamellae , 2000 .
[35] L. Ziurys. Detection of interstellar PN: the first phosphorus-bearing species observed in molecular clouds. , 1987, The Astrophysical journal.
[36] J. Oró,et al. The origin and early evolution of life on Earth. , 1990, Annual review of earth and planetary sciences.
[37] E. Thilo. Zur Strukturchemie der kondensierten anorganischen Phosphate , 1965 .
[38] Jack W. Szostak,et al. An optimal degree of physical and chemical heterogeneity for the origin of life? , 2011, Philosophical Transactions of the Royal Society B: Biological Sciences.
[39] A. Lazcano. Complexity, self-organization and the origin of life: The happy liaison? , 2009 .
[40] T. Kee,et al. On the Origin of Phosphorylated Biomolecules , 2011 .
[41] J. Sutherland,et al. The search for a potentially prebiotic synthesis of nucleotides via arabinose-3-phosphate and its cyanamide derivative. , 2008, Chemistry.
[42] R. Kluger,et al. Biomimetic peptide bond formation in water with aminoacyl phosphate esters. , 2011, Organic & biomolecular chemistry.
[43] Clemens Richert,et al. The effect of leaving groups on binding and reactivity in enzyme-free copying of DNA and RNA , 2016, Nucleic acids research.
[44] A. Schwartz. Specific phosphorylation of the 2′- and 3′- positions in ribonucleosides , 1969 .
[45] M. Maurel,et al. Origins of Life: Self-Organization and/or Biological Evolution? , 2009 .
[46] E. Gendaszewska-Darmach,et al. Biological Relevance of Lysophospholipids and Green Solutions for Their Synthesis , 2014 .