The production of ammonia by multiheme cytochromes C.

Jörg Simon, Peter M H Kroneck
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引用次数: 10

Abstract

The global biogeochemical nitrogen cycle is essential for life on Earth. Many of the underlying biotic reactions are catalyzed by a multitude of prokaryotic and eukaryotic life forms whereas others are exclusively carried out by microorganisms. The last century has seen the rise of a dramatic imbalance in the global nitrogen cycle due to human behavior that was mainly caused by the invention of the Haber-Bosch process. Its main product, ammonia, is a chemically reactive and biotically favorable form of bound nitrogen. The anthropogenic supply of reduced nitrogen to the biosphere in the form of ammonia, for example during environmental fertilization, livestock farming, and industrial processes, is mandatory in feeding an increasing world population. In this chapter, environmental ammonia pollution is linked to the activity of microbial metalloenzymes involved in respiratory energy metabolism and bioenergetics. Ammonia-producing multiheme cytochromes c are discussed as paradigm enzymes.

多血红素细胞色素C产生氨。
全球生物地球化学氮循环对地球上的生命至关重要。许多潜在的生物反应是由大量的原核和真核生命形式催化的,而其他反应则完全由微生物进行。上个世纪,由于人类的行为,全球氮循环急剧失衡,这主要是由哈伯-博世过程的发明引起的。它的主要产物氨是一种化学活性强、对生物有利的结合态氮。人为地以氨的形式向生物圈提供还原氮,例如在环境施肥、畜牧业和工业过程中,是养活不断增加的世界人口的必要条件。在本章中,环境氨污染与参与呼吸能量代谢和生物能量学的微生物金属酶的活性有关。合成氨多血红素细胞色素c作为范例酶进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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