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Parsing redox potentials of five ferredoxins found within Thermotoga maritima

机译:解析海栖嗜热菌中五种铁氧还蛋白的氧化还原电位

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摘要

Most organisms contain multiple soluble protein‐based redox carriers such as members of the ferredoxin (Fd) family, that contain one or more iron–sulfur clusters. The potential redundancy of Fd proteins is poorly understood, particularly in connection to the ability of Fd proteins to deliver reducing equivalents to members of the “radical SAM,” or ‐adenosylmethionine radical enzyme (ARE) superfamily, where the activity of all known AREs requires that an essential iron–sulfur cluster bound by the enzyme be reduced to the catalytically relevant [Fe S ] oxidation state. As it is still unclear whether a single Fd in a given organism is specific to individual redox partners, we have examined the five Fd proteins found within direct electrochemistry, to compare them in a side‐by‐side fashion for the first time. While a single [Fe S ]‐cluster bearing Fd (TM0927) has a potential of −420 mV, the other four 2x[Fe S ]‐bearing Fds (TM1175, TM1289, TM1533, and TM1815) have potentials that vary significantly, including cases where the two clusters of the same Fd are essentially coincident (e.g., TM1175) and those where the potentials are well separate (TM1815).
机译:大多数生物都包含多种基于可溶性蛋白质的氧化还原载体,例如铁氧还蛋白(Fd)家族的成员,其中包含一个或多个铁硫簇。人们对Fd蛋白的潜在冗余知之甚少,特别是在Fd蛋白向“自由基SAM”或“腺苷甲硫氨酸自由基酶(ARE)”超家族成员传递还原等效物的能力方面,这需要所有已知ARE的活性都需要酶结合的必需铁硫簇被还原为催化相关的[Fe S]氧化态。由于尚不清楚给定生物体中的单个Fd是否特定于单个氧化还原伙伴,因此我们检查了直接电化学法中发现的5种Fd蛋白,并首次进行了比较。虽然单个[Fe S]簇轴承Fd(TM0927)的电势为-420 mV,但其他四个2x [Fe S]簇轴承Fd(TM1175,TM1289,TM1533和TM1815)的电势变化很大,包括相同Fd的两个簇基本重合的情况(例如TM1175)和电位完全分开的情况(TM1815)。

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