Ali Shah Raj
Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee, 247 667, India.
Orig Life Evol Biosph. 2007 Jun;37(3):225-34. doi: 10.1007/s11084-007-9064-7. Epub 2007 Mar 13.
It has been proposed that metal cyanide complexes would have acted as effective prebiotic catalysts. Insoluble metal cyanide complexes could have concentrated biomonomers from the dilute prebiotic soup, facilitating certain prebiotic reactions. In the light of the above hypothesis, interaction of four ribonucleotides, namely 5'-AMP, 5'-GMP, 5'-CMP, and 5'-UMP with copper(II)- and cadmium(II) hexacyanocobaltate(III) has been studied. The interaction was found to be maximum at neutral pH. 5'-GMP showed greater interaction with both the metal hexacyanocobaltate(III) while copper(II) hexacyanocobaltate(III) showed greater uptake than cadmium(II) hexacyanocobaltate(III) for all the four ribonucleotides studied. Infrared spectral studies of ribonucleotides, metal hexacyanocobaltate(III) and ribonucleotide - metal hexacyanocobaltate(III) adducts indicated that the nitrogen base and phosphate moiety of ribonucleotides interact with outer divalent metal ion present in the lattice of metal hexacyanocobaltate(III).
有人提出金属氰化物配合物可能是有效的前生物催化剂。不溶性金属氰化物配合物可以从稀的前生物汤中浓缩生物单体,促进某些前生物反应。根据上述假设,研究了四种核糖核苷酸,即5'-AMP、5'-GMP、5'-CMP和5'-UMP与六氰合钴(III)铜(II)和六氰合钴(III)镉(II)的相互作用。发现该相互作用在中性pH值时最大。对于所研究的所有四种核糖核苷酸,5'-GMP与两种金属六氰合钴(III)的相互作用更强,而六氰合钴(III)铜(II)比六氰合钴(III)镉(II)的摄取量更大。核糖核苷酸、金属六氰合钴(III)和核糖核苷酸-金属六氰合钴(III)加合物的红外光谱研究表明,核糖核苷酸的氮碱基和磷酸部分与金属六氰合钴(III)晶格中存在的外层二价金属离子相互作用。