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首页> 外文期刊>Journal of Molecular Biology >Two stacked heme molecules in the binding pocket of the periplasmic heme-binding protein HmuT from Yersinia pestis.
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Two stacked heme molecules in the binding pocket of the periplasmic heme-binding protein HmuT from Yersinia pestis.

机译:鼠疫耶尔森氏菌周质血红素结合蛋白HmuT的结合口袋中有两个堆叠的血红素分子。

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摘要

The periplasmic binding protein HmuT from Yersinia pestis (YpHmuT) is a component of the heme uptake locus hmu and delivers bound hemin to the inner-membrane-localized, ATP-binding cassette (ABC) transporter HmuUV for translocation into the cytoplasm. The mechanism of this process, heme transport across the inner membrane of pathogenic bacteria, is currently insufficiently understood at the molecular level. Here we describe the crystal structures of the substrate-free and heme-bound states of YpHmuT, revealing two lobes with a central binding cleft. Superposition of the apo and holo states reveals a minor tilting motion of the lobes surrounding concomitant with heme binding. Unexpectedly, YpHmuT binds two stacked hemes in a central binding cleft that is larger than those of the homologous periplasmic heme-binding proteins ShuT and PhuT, both of which bind only one heme. The hemes bound to YpHmuT are coordinated via a tyrosine side chain that contacts the Fe atom of one heme and a histidine that contacts the Fe atom of the other heme. The coordinating histidine is only conserved in a subset of periplasmic heme binding proteins suggesting that its presence predicts the ability to bind two heme molecules simultaneously. The structural data are supported by spectroscopic binding studies performed in solution, where up to two hemes can bind to YpHmuT. Isothermal titration calorimetry suggests that the two hemes are bound in discrete, sequential steps and with dissociation constants (K(D)) of approximately 0.29 and approximately 29 nM, which is similar to the affinities observed in other bacterial substrate binding proteins. Our findings suggest that the cognate ABC transporter HmuUV may simultaneously translocate two hemes per reaction cycle.
机译:鼠疫耶尔森氏菌(YpHmuT)的周质结合蛋白HmuT是血红素摄取基因座hmu的一个组成部分,它将结合的血红素传递到内膜定位的ATP结合盒(ABC)转运蛋白HmuUV上,从而易位到细胞质中。目前在分子水平上尚不充分了解该过程的机制,即血红素跨致病菌内膜的运输。在这里,我们描述了YpHmuT的无底物和血红素结合状态的晶体结构,揭示了两个具有中央结合裂口的裂片。载脂蛋白和全环状态的叠加揭示了伴随血红素结合的周围小叶的轻微倾斜运动。出乎意料的是,YpHmuT在中央结合裂隙中结合两个堆叠的血红素,该裂隙大于同源周质血红素结合蛋白ShuT和PhuT的蛋白质,两者都仅结合一个血红素。与YpHmuT结合的血红素通过与一个血红素的Fe原子接触的酪氨酸侧链和与另一个血红素的Fe原子接触的组氨酸进行配位。配位组氨酸仅在周质血红素结合蛋白的一个子集中保守,这表明其存在预示着同时结合两个血红素分子的能力。结构数据得到在溶液中进行的光谱结合研究的支持,其中最多两个血红素可以与YpHmuT结合。等温滴定量热法表明,这两个血红素以离散的连续步骤结合,解离常数(K(D))约为0.29和约29 nM,这与在其他细菌底物结合蛋白中观察到的亲和力相似。我们的发现表明,同源ABC转运蛋白HmuUV可能在每个反应周期中同时易位两个血红素。

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