Switzer R L
Department of Biochemistry, University of Illinois, Urbana, 61801.
Biofactors. 1989 Dec;2(2):77-86.
In recent years a number of enzymes have been discovered which, contrary to prior expectations, contain FeS clusters but do not participate in redox reactions. In all cases but one, where the FeS cluster in these enzymes has been identified, it is a [4Fe-4S] cluster. In mammalian aconitase a single Fe atom of the [4Fe-4S] cluster participates in catalysis of hydration-dehydration reactions by direct ligation to the substrates. A number of hydrolyases containing FeS clusters have now been identified. In Bacillus subtilis glutamine phosphoribosyl-pyrophosphate amidotransferase the [4Fe-4S] cluster is essential for the active structure of the enzyme, but probably does not participate directly in catalysis. Rather, the cluster may serve as part of a mechanism of oxidative inactivation of the enzyme in vivo, which is followed by its intracellular degradation. The role played by a [4Fe-4S] cluster in Escherichia coli endonuclease III is at present completely unknown. Thus, a number of novel roles for FeS clusters in enzymology and protein structure have been discovered, and more novel findings must be anticipated.
近年来,已发现了多种酶,这些酶与之前的预期相反,含有铁硫簇,但不参与氧化还原反应。在已鉴定出这些酶中铁硫簇的所有情况中(只有一个例外),都是[4Fe-4S]簇。在哺乳动物乌头酸酶中,[4Fe-4S]簇的单个铁原子通过直接与底物连接参与水合-脱水反应的催化。现已鉴定出多种含有铁硫簇的水解酶。在枯草芽孢杆菌谷氨酰胺磷酸核糖焦磷酸酰胺转移酶中,[4Fe-4S]簇对于酶的活性结构至关重要,但可能不直接参与催化。相反,该簇可能作为酶在体内氧化失活机制的一部分,随后被细胞内降解。目前,[4Fe-4S]簇在大肠杆菌内切核酸酶III中所起的作用完全未知。因此,已发现了铁硫簇在酶学和蛋白质结构中的一些新作用,并且必定会有更多新的发现。