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在聚腺苷酸模板上进行的非酶促模板导向寡聚化反应:对首个遗传物质本质的启示

Attempted nonenzymatic template-directed oligomerizations on a polyadenylic acid template: implications for the nature of the first genetic material.

作者信息

Stribling R, Miller S L

机构信息

Department of Chemistry, University of California, San Diego, La Jolla 92093, USA.

出版信息

J Mol Evol. 1991;32:282-8. doi: 10.1007/BF02102185.

Abstract

Previous attempts to produce nonenzymatic template-directed oligomerizations of activated pyrimidines on polypurine templates have been unsuccessful. The only efficient reactions are those where the template is composed primarily of pyrimidines, especially cytosine. Because molecular evolution requires that a synthesized daughter polynucleotide be capable of acting as a template for the synthesis of the original polynucleotide, the one-way replication achieved thus far is inadequate to initiate an evolving system. Several uracil analogs were used in this investigation in order to search for possible replacements for uracil. The monomers used in this investigation were the imidazolides of UMP, xanthosine 5'-monophosphate, the bis-monophosphates of the acyclic nucleosides of uracil, and 2,4-quinazolinedione. The concentrations of various salts, buffers, pH, and temperature were among the different variables investigated in attempts to find conditions that would permit template-directed oligomerizations. Although the different monomers in this study demonstrated varying abilities to form very short oligomers, we were unable to detect any enhancement of this oligomerization that could be attributed to the poly(A) template. Although special conditions might be found that would allow purine-rich templates to work, these reactions cannot be considered robust. The results of our experiments suggest that pyrimidines were not part of the original replicating system on the primitive Earth. It has already been shown that ribose is an unlikely component of the first replicating systems, and we now suggest that phosphate was absent as well. This is due to the low solubility of phosphate in the present ocean (3 x 10(-6) M), as well as the difficulty of prebiotic activation of phosphates.

摘要

此前尝试在多聚嘌呤模板上进行活化嘧啶的非酶模板导向寡聚反应均未成功。唯一有效的反应是那些模板主要由嘧啶,尤其是胞嘧啶组成的反应。由于分子进化要求合成的子代多核苷酸能够作为合成原始多核苷酸的模板,所以迄今为止实现的单向复制不足以启动一个进化系统。本研究中使用了几种尿嘧啶类似物,以寻找可能替代尿嘧啶的物质。本研究中使用的单体有尿苷一磷酸的咪唑酯、黄苷5'-单磷酸、尿嘧啶无环核苷的双单磷酸酯以及2,4-喹唑啉二酮。在尝试寻找允许模板导向寡聚反应的条件时,各种盐、缓冲液、pH值和温度的浓度是所研究的不同变量。尽管本研究中的不同单体形成极短寡聚物的能力各不相同,但我们未能检测到可归因于聚(A)模板的这种寡聚反应的任何增强。尽管可能会找到允许富含嘌呤的模板起作用的特殊条件,但这些反应不能被认为是可靠的。我们的实验结果表明,嘧啶不是原始地球上原始复制系统的一部分。已经表明核糖不太可能是第一个复制系统的组成部分,现在我们认为磷酸盐也不存在。这是由于磷酸盐在当今海洋中的溶解度低(3×10⁻⁶ M),以及磷酸盐的益生元激活困难。

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