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Structures of benzylsuccinate synthase elucidate roles of accessory subunits in glycyl radical enzyme activation and activity

机译:苄基琥珀酸合酶的结构阐明了辅助亚基在糖基自由基酶激活和活性中的作用

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摘要

Anaerobic degradation of the environmental pollutant toluene is initiated by the glycyl radical enzyme benzylsuccinate synthase (BSS), which catalyzes the radical addition of toluene to fumarate, forming benzylsuccinate. We have determined crystal structures of the catalytic α-subunit of BSS with its accessory subunits β and γ, which both bind a [4Fe-4S] cluster and are essential for BSS activity in vivo. We find that BSSα has the common glycyl radical enzyme fold, a 10-stranded β/α-barrel that surrounds the glycyl radical cofactor and active site. Both accessory subunits β and γ display folds related to high potential iron–sulfur proteins but differ substantially from each other in how they interact with the α-subunit. BSSγ binds distally to the active site, burying a hydrophobic region of BSSα, whereas BSSβ binds to a hydrophilic surface of BSSα that is proximal to the active site. To further investigate the function of BSSβ, we determined the structure of a BSSαγ complex. Remarkably, we find that the barrel partially opens, allowing the C-terminal region of BSSα that houses the glycyl radical to shift within the barrel toward an exit pathway. The structural changes that we observe in the BSSαγ complex center around the crucial glycyl radical domain, thus suggesting a role for BSSβ in modulating the conformational dynamics required for enzyme activity. Accompanying proteolysis experiments support these structural observations.
机译:糖基自由基酶苄基琥珀酸合酶(BSS)引发环境污染物甲苯的厌氧降解,该酶催化甲苯向富马酸酯的自由基加成反应,形成琥珀酸苄基酯。我们已经确定了BSS的催化性α-亚基及其辅助亚基β和γ的晶体结构,它们都结合了[4Fe-4S]簇并且对于体内BSS活性至关重要。我们发现,BSSα具有常见的糖基自由基酶折叠,围绕糖基自由基辅因子和活性位点的10链β/α-桶。辅助亚基β和γ都显示与高潜力铁硫蛋白相关的折叠,但在与α亚基相互作用的方式上却有很大不同。 BSSγ远端结合到活性位点,掩埋BSSα的疏水区域,而BSSβ结合到BSSα接近活性位点的亲水表面。为了进一步研究BSSβ的功能,我们确定了BSSαγ复合物的结构。值得注意的是,我们发现该枪管部分打开,从而使容纳糖基的BSSα的C端区域在枪管内朝出口路径移动。我们在BSSαγ复合物中观察到的结构变化以关键的糖基自由基结构域为中心,因此表明BSSβ在调节酶活性所需的构象动力学中起作用。伴随的蛋白水解实验支持这些结构观察。

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