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Iron-Only and Vanadium Nitrogenases: Fail-Safe Enzymes or Something More?
Annual Review of Microbiology ( IF 10.5 ) Pub Date : 2020-09-09 , DOI: 10.1146/annurev-micro-022620-014338
Caroline S Harwood 1
Affiliation  

The enzyme molybdenum nitrogenase converts atmospheric nitrogen gas to ammonia and is of critical importance for the cycling of nitrogen in the biosphere and for the sustainability of life. Alternative vanadium and iron-only nitrogenases that are homologous to molybdenum nitrogenases are also found in archaea and bacteria, but they have a different transition metal, either vanadium or iron, at their active sites. So far alternative nitrogenases have only been found in microbes that also have molybdenum nitrogenase. They are less widespread than molybdenum nitrogenase in bacteria and archaea, and they are less efficient. The presumption has been that alternative nitrogenases are fail-safe enzymes that are used in situations where molybdenum is limiting. Recent work indicates that vanadium nitrogenase may play a role in the global biological nitrogen cycle and iron-only nitrogenase may contribute products that shape microbial community interactions in nature.

中文翻译:


纯铁和钒氮酶:故障安全酶还是更多?

钼氮酶将大气中的氮气转化为氨,这对于生物圈中氮的循环以及生命的可持续性至关重要。在古细菌和细菌中也发现了与钼固氮酶同源的替代钒和铁固氮酶,但它们的活性部位具有钒或铁的不同过渡金属。迄今为止,仅在也具有钼固氮酶的微生物中发现了替代固氮酶。它们在细菌和古细菌中不如钼氮酶广泛存在,并且效率较低。据推测,替代的固氮酶是故障安全的酶,用于限制钼的情况。

更新日期:2020-09-10
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