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酶驱动的物种形成:通过脂质捕获使古细菌结晶

Enzyme-driven speciation: crystallizing Archaea via lipid capture.

作者信息

Payandeh Jian, Pai Emil F

机构信息

Department of Medical Biophysics, University of Toronto, Toronto, Ontario, Canada.

出版信息

J Mol Evol. 2007 Mar;64(3):364-74. doi: 10.1007/s00239-006-0141-8. Epub 2007 Jan 25.

Abstract

As the origin(s) of life on Earth remains an open question, detailed characteristics about the "last universal ancestor" (LUA) continue to be obscured. Here we provide arguments that strengthen the bacterial-like nature of the LUA. Our view attempts to recreate the evolution of archaeal lipids, the major components of the distinctive membrane that encapsulates these ancient prokaryotes. We show that (S)- 3-O-geranylgeranylglyceryl phosphate synthase (GGGPS), a TIM-barrel protein that performs the committed step in archaeal lipid synthesis, likely evolved from the duplication and fusion of a (betaalpha)4 half-barrel ancestor. By comparison to the well-characterized HisA and HisF TIM-barrel proteins, we propose a time line for the invention of this diagnostic archaeal biosynthetic pathway. After excluding the possibility of horizontal gene transfer, we conclude that the evolutionary history of GGGPS mirrors the emergence of Archaea from the LUA. We illustrate aspects of this "lipid capture" model that support its likelihood in recreating key evolutionary events and, as our hypothesis is built on a single initiating event, we suggest that the appearance of GGGPS represents an example of enzyme-driven speciation.

摘要

由于地球上生命的起源仍是一个悬而未决的问题,关于“最后共同祖先”(LUA)的详细特征仍不明朗。在此,我们提出一些论据来强化LUA具有类细菌性质的观点。我们的观点试图重现古菌脂质的进化过程,古菌脂质是包裹这些古老原核生物的独特膜结构的主要成分。我们发现,(S)-3-O-香叶基香叶基甘油磷酸合酶(GGGPS),一种在古菌脂质合成中起关键作用的TIM桶状蛋白,可能由一个(β-α)4半桶状祖先基因的复制和融合进化而来。通过与已充分研究的HisA和HisF TIM桶状蛋白进行比较,我们提出了这条具有诊断意义的古菌生物合成途径的发明时间线。在排除水平基因转移的可能性后,我们得出结论,GGGPS的进化史反映了古菌从LUA的出现。我们阐述了这种“脂质捕获”模型的一些方面,这些方面支持了它在重现关键进化事件中的可能性,并且由于我们的假说是基于一个单一的起始事件建立的,我们认为GGGPS的出现代表了酶驱动物种形成的一个例子。

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