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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Functional implications of the interaction between HscB and IscU in the biosynthesis of FeS clusters
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Functional implications of the interaction between HscB and IscU in the biosynthesis of FeS clusters

机译:HscB和IscU之间相互作用在FeS团簇生物合成中的功能意义

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摘要

In bacteria, HscB is the cochaperone of HscA in modulating the transfer of 2Fe2S clusters from a cluster-loaded form of the scaffold protein IscU to acceptor apoproteins. HscB binding to the IscU apoform (apoIscU) reportedly impairs the structural flexibility of apoIscU, but the effects of HscB on cluster formation on IscU have never been assessed. We report that presence of HscB impaired the rate-but not the equilibrium-of the appearance of the distinctive circular dichroism signals associated with formation of a stable 2Fe-2S cluster on IscU in reconstitution experiments. This impairment: (1) was independent of the source of cluster sulfide; (2) was not observed for HscB mutants unable to bind IscU; (3) implied formation of a 1/1 HscB/IscU complex; (4) was not observed for a D39A mutant of IscU, with a much more rigid structure than wt IscU. The cluster species assembled on IscU in the presence of HscB were transferred to apoferredoxin at a slower rate than those formed in the absence of HscB, unless ATP and HscA were also present. At contrast, HscB was found to improve the "catalytic" function of IscU with respect to cluster assembly in the presence of a large apoferredoxin excess. Thus, the HscB/IscU interaction may modulate formation and transfer of FeS clusters by accelerating cluster biosynthesis when appropriate target apoproteins are abundant or by slowing it down when the rate of apoprotein synthesis is slow, and cluster-loaded IscU is more likely to play a role as a "FeS storage" protein.
机译:在细菌中,HscB是HscA的伴侣蛋白,可调节2Fe2S簇从簇蛋白形式的支架蛋白IscU向受体载脂蛋白的转移。据报道,HscB与IscU脱辅基(apoIscU)的结合会损害apoIscU的结构灵活性,但从未评估过HscB对IscU团簇形成的影响。我们报告说,HscB的存在会削弱在重组实验中与IscU上稳定的2Fe-2S团簇形成相关的独特的圆形二向色信号的出现速率(而不是平衡)。这种损害:(1)与簇状硫化物的来源无关; (2)没有观察到不能结合IscU的HscB突变体; (3)隐含1/1 HscB / IscU复合物的形成;对于IscU的D39A突变体,未观察到(4),该突变体的结构比wt IscU强得多。在存在HscB的情况下,在IscU上组装的簇物种以比不存在HscB时形成的簇慢的速率转移到阿波铁氧还蛋白上,除非还存在ATP和HscA。相反,在大量的载铁氧还蛋白过量的情况下,发现HscB可以改善IscU相对于簇组装的“催化”功能。因此,当适当的靶载脂蛋白丰富时,HscB / IscU相互作用可通过加速簇生物合成来调节FeS簇的形成和转移,或在载脂蛋白合成速度较慢时减慢其速度,而簇载的IscU更有可能发挥作用。作为“ FeS储存”蛋白。

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