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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Volumetric properties underlying ligand binding in a monomeric hemoglobin: a high-pressure NMR study.
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Volumetric properties underlying ligand binding in a monomeric hemoglobin: a high-pressure NMR study.

机译:单体血红蛋白中配体结合的潜在体积特性:高压NMR研究。

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摘要

The 2/2 hemoglobin of the cyanobacterium Synechococcus sp. PCC 7002, GlbN, coordinates the heme iron with two histidines and exists either with a b heme or with a covalently attached heme. The binding of exogenous ligands displaces the distal histidine and induces a conformational rearrangement involving the reorganization of internal void volumes. The formation of passageways within the resulting conformation is thought to facilitate ligand exchange and play a functional role. Here we monitored the perturbation induced by pressure on the ferric bis-histidine and cyanide-bound states of GlbN using (1)H-(15)N HSQC NMR spectroscopy. We inspected the outcome with a statistical analysis of 170 homologous 2/2 hemoglobin sequences. We found that the compression landscape of GlbN, as represented by the variation of an average chemical shift parameter, was highly sensitive to ligand swapping and heme covalent attachment. Stabilization of rare conformers was observed at high pressures and consistent with cavity redistribution upon ligand binding. In all states, the EF loop was found to be exceptionally labile to pressure, suggesting a functional role as a semi-flexible hinge between the adjacent helices. Finally, coevolved clusters presented a common pattern of compensating pressure responses. The high-pressure dissection combined with protein sequence analysis established locations with volumetric signatures relevant to residual communication of 2/2 hemoglobins. This article is part of a Special Issue entitled: Oxygen Binding and Sensing Proteins.
机译:蓝藻Syechococcus sp。的2/2血红蛋白。 PCC 7002(GlbN)将血红素铁与两个组氨酸配位,并与b血红素或共价连接的血红素一起存在。外源性配体的结合取代了远端的组氨酸,并引起构象重排,涉及内部空隙体积的重组。在所得构象内的通道形成被认为促进配体交换并起功能作用。在这里,我们使用(1)H-(15)N HSQC NMR光谱监测了GlbN的铁双组氨酸和氰化物结合态上的压力诱导的扰动。我们用170个同源2/2血红蛋白序列的统计分析检查了结果。我们发现,以平均化学位移参数的变化表示的GlbN压缩态势对配体交换和血红素共价连接高度敏感。在高压下观察到稀有构象异构体的稳定化,并与配体结合后的空腔重新分布相一致。在所有状态下,都发现EF回路对压力异常不稳定,表明其功能是相邻螺旋之间的半柔性铰链。最后,共同演化的星团呈现出补偿压力响应的常见模式。高压解剖与蛋白质序列分析相结合,建立了具有与2/2血红蛋白的残留通讯相关的容积特征的位置。本文是名为“氧结合和传感蛋白”的特刊的一部分。

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