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假尿苷的益生元合成尝试。

Attempted prebiotic synthesis of pseudouridine.

作者信息

Dworkin J P

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla 92093-0506, USA.

出版信息

Orig Life Evol Biosph. 1997 Aug;27(4):345-55. doi: 10.1023/a:1006579819734.

Abstract

Pseudouridine is a modified base found in all tRNA and rRNA. Hence, it is reasonable to think that pseudouridine was important in the early evolution, if not the origin, of life. Since uracil reacts rapidly with formaldehyde and other aldehydes at the C-5 position, it is plausible that pseudouridine could be synthesized in a similar way by the reaction of the C-5 of uracil with the C-1 of ribose. The determining factor is whether the ribose could react with the uracil faster than ribose decomposes. However, both rates are determined by the amount of free aldehyde in the ribose. Various plausible prebiotic reactions were investigated and none showed pseudouridine above the detection limit (<0.01%). Only unreacted uracil and ribose decomposition products could be observed. Thus the rate of addition of ribose to uracil is much slower than the decomposition of ribose under any reasonable prebiotic conditions. Unless efficient non-biological catalysts for any of these reactions exist, pseudouridine would not have been synthesized to any significant extent without the use of biologically produced enzymes.

摘要

假尿苷是一种存在于所有转运核糖核酸(tRNA)和核糖体核糖核酸(rRNA)中的修饰碱基。因此,有理由认为假尿苷在生命的早期进化过程中(即便不是在生命起源时)就已发挥重要作用。由于尿嘧啶会在C - 5位迅速与甲醛及其他醛类发生反应,所以假尿苷有可能通过尿嘧啶的C - 5位与核糖的C - 1位发生类似反应而合成。决定因素在于核糖与尿嘧啶的反应速度是否快于核糖的分解速度。然而,这两种速度均由核糖中游离醛的量所决定。研究了各种可能的前生物反应,结果均未发现假尿苷超过检测限(<0.01%)。只能观察到未反应的尿嘧啶和核糖分解产物。因此,在任何合理的前生物条件下,核糖与尿嘧啶的加成速度都远慢于核糖的分解速度。除非存在针对这些反应中任何一个的高效非生物催化剂,否则在不使用生物产生的酶的情况下,假尿苷不可能大量合成。

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