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Heme biosynthesis in prokaryotes

机译:原核生物中的血红素生物合成

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摘要

The cyclic tetrapyrrole heme is used as a prosthetic group in a broad variety of different proteins in almost all organisms. Often, it is essential for vital biochemical processes such as aerobic and anaerobic respiration as well as photosynthesis. In Nature, heme is made from the common tetrapyrrole precursor 5-aminolevulinic acid, and for a long time it was assumed that heme is biosynthesized by a single, common pathway in all organisms. However, although this is indeed the case in eukaryotes, heme biosynthesis is more diverse in the prokaryotic world, where two additional pathways exist. The final elucidation of the two 'alternative' heme biosynthesis routes operating in some bacteria and archaea was achieved within the last decade. This review summarizes the three different heme biosynthesis pathways with a special emphasis on the two 'new' prokaryotic routes.
机译:环状四吡咯血红素用作几乎所有生物中的各种不同蛋白质中的假体组。 通常,对于重要的生化过程,如有氧和厌氧呼吸以及光合作用。 本质上,血红素由普通的四吡咯前体5-氨基乙酰丙酸制成,并且在很长一段时间内,假设血红素通过所有生物体中的单一常见途径生物合成。 然而,虽然这是真核生物的情况,但血红素生物合成在原核世界中更多样化,其中存在两种额外的途径。 在过去十年内实现了在某些细菌和古痤疮中操作的两个“替代”血红素生物合成途径的最后阐明。 本综述总结了三种不同的血红素生物合成途径,特别强调两个“新”原核路线。

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