Evaporite Borate-Containing Mineral Ensembles Make Phosphate Available and Regiospecifically Phosphorylate Ribonucleosides: Borate as a Multifaceted Problem Solver in Prebiotic Chemistry

被引:67
作者
Kim, Hyo-Joong [1 ]
Furukawa, Yoshihiro [2 ]
Kakegawa, Takeshi [2 ]
Bita, Andrei [3 ]
Scorei, Romulus [4 ]
Benner, Steven A. [1 ]
机构
[1] Firebird Biomol Sci LLC, 13709 Progress Blvd, Alachua, FL 32615 USA
[2] Tohoku Univ, Dept Earth Sci, Sendai, Miyagi, Japan
[3] Univ Med & Pharm Craiova, Craiova, Romania
[4] Univ Craiova, Craiova, Romania
关键词
borates; mars; prebiotic chemistry; ribonucleosides; rna world; ISUA SUPRACRUSTAL BELT; CONTINENTAL-CRUST; NUCLEOSIDE; TOURMALINE; RIBOSE; GA; STABILIZATION; FORMAMIDE; ISOTOPES; SUGARS;
D O I
10.1002/anie.201608001
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
RNA is currently thought to have been the first biopolymer to support Darwinian natural selection on Earth. However, the phosphate esters in RNA and its precursors, and the many sites at which phosphorylation might occur in ribonucleosides under conditions that make it possible, challenge prebiotic chemists. Moreover, free inorganic phosphate may have been scarce on early Earth owing to its sequestration by calcium in the unreactive mineral hydroxyapatite. Herein, it is shown that these problems can be mitigated by a particular geological environment that contains borate, magnesium, sulfate, calcium, and phosphate in evaporite deposits. Actual geological environments, reproduced here, show that Mg2+ and borate sequester phosphate from calcium to form the mineral luneburgite. Ribonucleosides stabilized by borate mobilize borate and phosphate from luneburgite, and are then regiospecifically phosphorylated by the mineral. Thus, in addition to guiding carbohydrate pre-metabolism, borate minerals in evaporite geoorganic contexts offer a solution to the phosphate problem in the RNA first model for the origins of life.
引用
收藏
页码:15816 / 15820
页数:5
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