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β 滚压成型 RTX 结构域对稀土元素的结合与回收

Rare Earth Element Binding and Recovery by a Beta Roll-Forming RTX Domain.

机构信息

Department of Chemical Engineering, Columbia University, New York, New York 10027, United States.

出版信息

Inorg Chem. 2024 Jul 22;63(29):13223-13230. doi: 10.1021/acs.inorgchem.4c00420. Epub 2024 Jul 10.

Abstract

The Block V of the RTX domain of the adenylate cyclase protein from is disordered, and upon binding eight calcium ions, it folds into a beta roll domain with a C-terminal capping group. Due to their similar ionic radii and coordination geometries, trivalent lanthanide ions have been used to probe and identify calcium-binding sites in many proteins. Here, we report using a FRET-based assay that the RTX domain can bind rare earth elements (REEs) with higher affinities than calcium. The apparent disassociation constants for lanthanide ions ranged from 20 to 75 μM, which are an order of magnitude higher than the affinity for calcium, with a higher selectivity toward heavy REEs over light REEs. Most proteins release bound ions at mildly acidic conditions (pH 5-6), and the high affinity REE-binding lanmodulin protein can bind 3-4 REE ions at pH as low as ∼2.5. Circular dichroism (CD) spectra of the RTX domain demonstrate pH-induced folding of the beta roll domain in the absence of ions, indicating that protonation of key amino acids enables structure formation in low pH solutions. The beta roll domain coordinates up to four ions in extreme pH conditions (pH < 1), as determined by equilibrium ultrafiltration experiments. Finally, to demonstrate a potential application of the RTX domain, REE ions (Nd and Dy) were recovered from other non-REEs (Fe and Co) in a NdFeB magnet simulant solution (at pH 6).

摘要

来自 的腺苷酸环化酶蛋白的 RTX 结构域的 V 区是无规则的,在结合八个钙离子后,它折叠成一个具有 C 末端封端基团的 β 滚折叠结构域。由于它们具有相似的离子半径和配位几何形状,三价镧系元素离子已被用于探测和鉴定许多蛋白质中的钙结合位点。在这里,我们报告了一种基于 FRET 的测定法,该方法表明 RTX 结构域可以与稀土元素(REEs)结合,亲和力高于钙。镧系元素离子的表观离解常数范围为 20-75 μM,比钙的亲和力高一个数量级,对重 REE 比对轻 REE 具有更高的选择性。大多数蛋白质在温和的酸性条件(pH 5-6)下释放结合的离子,而高亲和力的 REE 结合蛋白 lanmodulin 可以在 pH 低至约 2.5 的情况下结合 3-4 个 REE 离子。RTX 结构域的圆二色性(CD)谱表明,在没有离子的情况下,β 滚折叠结构域在 pH 诱导下发生折叠,表明关键氨基酸的质子化使结构在低 pH 溶液中形成。通过平衡超滤实验确定,在极端 pH 条件(pH < 1)下,β 滚折叠结构域可以配位多达四个离子。最后,为了展示 RTX 结构域的潜在应用,从 NdFeB 磁铁模拟溶液(pH 6)中的其他非 REE(Fe 和 Co)中回收 REE 离子(Nd 和 Dy)。

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