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The 4Fe‐4S clusters of Rpo3 are key determinants in the post Rpo3/Rpo11 heterodimer formation of RNA polymerase in Methanosarcina acetivorans

机译:Rpo3的4Fe-4S簇是乙酰甲烷单胞菌中RNA聚合酶后Rpo3 / Rpo11异二聚体形成的关键决定因素。

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摘要

Subunits Rpo3 and Rpb3/AC40 of RNA polymerase (RNAP) from many archaea and some eukaryotes, respectively, contain a ferredoxin‐like domain (FLD) predicted to bind one or two [4Fe‐4S] clusters postulated to play a role in regulating the assembly of RNAP. To test this hypothesis, the two [4Fe‐4S] cluster Rpo3 from Methanosarcina acetivorans was modified to generate variants that lack the FLD or each [4Fe‐4S] cluster. Viability of gene replacement mutants revealed that neither the FLD nor the ability of the FLD to bind either [4Fe‐4S] cluster is essential. Nevertheless, each mutant demonstrated impaired growth due to significantly lower RNAP activity when compared to wild type. Affinity purification of tagged Rpo3 variants from M. acetivorans strains revealed that neither the FLD nor each [4Fe‐4S] cluster is required for the formation of a Rpo3/11 heterodimer, the first step in the assembly of RNAP. However, the association of the Rpo3/11 heterodimer with catalytic subunits Rpo2′ and Rpo1″ was diminished by the removal of the FLD and each cluster, with the loss of cluster 1 having a more substantial effect than the loss of cluster 2. These results reveal that the FLD and [4Fe‐4S] clusters, particularly cluster 1, are key determinants in the post Rpo3/11 heterodimer assembly of RNAP in M. acetivorans.
机译:来自许多古细菌和某些真核生物的RNA聚合酶(RNAP)的亚基Rpo3和Rpb3 / AC40分别包含一个铁氧还蛋白样结构域(FLD),预计将结合一个或两个[4Fe-4S]簇,假定在调控细胞中发挥作用。 RNAP的组装。为了验证该假设,对来自乙酸拟甲烷单胞菌的两个[4Fe-4S]簇Rpo3进行了修饰,以生成缺少FLD或每个[4Fe-4S]簇的变体。基因替代突变体的活力表明,FLD或FLD结合[4Fe-4S]簇的能力都不是必需的。然而,由于与野生型相比,RNAP活性明显降低,每个突变体均显示出生长受损。从醋栗分枝杆菌菌株中标记Rpo3变体的亲和纯化显示,形成Rpo3 / 11异二聚体(RNAP组装的第一步)既不需要FLD也不需要每个[4Fe-4S]簇。但是,通过去除FLD和每个簇,Rpo3 / 11异二聚体与催化亚基Rpo2'和Rpo1''的缔合被减弱,簇1的损失比簇2的损失具有更大的影响。这些结果揭示了FLD和[4Fe-4S]簇,特别是簇1,是醋栗丙酸杆菌中RNAP的Rpo3 / 11异二聚体装配后的关键决定因素。

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