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辅因子的利用在新的RNA世界中扩展了新陈代谢。

Utilization of cofactors expands metabolism in a new RNA world.

作者信息

Connell G J, Christian E L

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Colorado at Boulder 80309-0347.

出版信息

Orig Life Evol Biosph. 1993 Dec;23(5-6):291-7. doi: 10.1007/BF01582079.

Abstract

RNA has been hypothesized to have preceded proteins as the major catalysts of the biosphere, yet there are only a very limited number of chemical reactions that are known to be catalyzed by modern RNA. Cofactors are used by the majority of protein enzymes to supply additional functional groups to the active site. RNA should also be able to utilize some of these same cofactors to extend its own catalytic potential. We describe here how it could be possible to use selection--amplification from a population of random RNA to obtain a coenzyme A mediated RNA transacylase. Exploitation of some of the sulphur chemistry mediated by coenzyme A could have significantly expanded a prebiotic RNA directed metabolism.

摘要

有人提出假说认为,在生物圈中,RNA作为主要催化剂先于蛋白质出现,然而已知由现代RNA催化的化学反应数量非常有限。大多数蛋白质酶会利用辅因子向活性位点提供额外的官能团。RNA应该也能够利用其中一些相同的辅因子来扩展自身的催化潜力。我们在此描述了如何通过从随机RNA群体中进行选择-扩增来获得辅酶A介导的RNA转酰基酶。利用辅酶A介导的一些硫化学作用可能会显著扩展前体生物RNA导向的代谢。

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