Flexibility of EF-hand motifs: structural and thermodynamic studies of Calcium Binding Protein-1 from Entamoeba histolytica with Pb2+, Ba2+, and Sr2+.

Q1 Biochemistry, Genetics and Molecular Biology BMC Biophysics Pub Date : 2012-08-20 DOI:10.1186/2046-1682-5-15
Shivesh Kumar, Ejaz Ahmad, Sanjeev Kumar, Rizwan Hasan Khan, Samudrala Gourinath
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引用次数: 13

Abstract

Background: EF-hand proteins can be activated by the binding of various heavy metals other than calcium, and such complexes can disturb the calcium-signaling pathway and cause toxicity and disease causing state. So far, no comprehensive study has been done to understand different heavy metals binding to calcium signaling proteins.

Results: In this work, the flexibility of the EF-hand motifs are examined by crystallographic and thermodynamic studies of binding of Pb2+, Ba2+ and Sr2+ to Calcium Binding Protein-1 from Entamoeba histolytica (EhCaBP1). The structures of the EhCaBP1- heavy metal complexes are found to be overall similar, nevertheless specific differences in metal coordination, and small differences in the coordination distances between the metal and the ligands in the metal binding loop. The largest such distances occur for the Ba2+- EhCaBP1 complex, where two bariums are bound with partial occupancy at the EF2 motif. Thermodynamic studies confirm that EhCaBP1 has five binding sites for Ba2+ compared to four binding sites for the other metals. These structures and thermodynamic studies reveal that the EF-hand motifs can accommodate several heavy atoms with similar binding affinities. The binding of Ca2+ to the 1st, 2nd and 4th sites and the binding of Ba2+ to the 1st, 2nd, 4th and 5th sites are both enthalpically and entropically driven, whereas the binding of Sr2+ to the 1st, 2nd and 4th sites are simply enthalpy driven, interestingly in agreement with ITC data, Sr2+ do not coordinate with water in this structure. For all the metals, binding to the 3rd site is only entropy driven.

Conclusion: Energetically, Ca2+ is preferred in three sites, while in one site Ba2+ has better binding energy. The Sr2+-coordination in the EF hand motifs is similar to that of the native Ca2+ bound structure, except for the lack of water coordination. Sr2+ coordination seems to be a pre-formed in nature since all seven coordinating atoms are from the protein itself, which also correlates with entropy contributions in Sr2+ binding. These findings improve our understanding of metal association with calcium binding proteins and of metal induced conformational changes.

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EF-hand基元的灵活性:Pb2+, Ba2+和Sr2+溶组织内阿米巴钙结合蛋白-1的结构和热力学研究。
背景:EF-hand蛋白可以被钙以外的多种重金属结合激活,这种复合物可以干扰钙信号通路,引起毒性和致病状态。到目前为止,还没有全面的研究来了解不同重金属与钙信号蛋白的结合。结果:通过对溶组织内阿米巴(EhCaBP1)中Pb2+、Ba2+和Sr2+与钙结合蛋白-1结合的晶体学和热力学研究,研究了EF-hand基元的灵活性。EhCaBP1-重金属配合物的结构总体上相似,但在金属配位上有特定的差异,金属与金属结合环中配体的配位距离也有微小的差异。这种距离最大的是Ba2+- EhCaBP1复合体,其中两个钡结合在EF2基序上部分占用。热力学研究证实EhCaBP1有5个结合Ba2+的位点,而其他金属只有4个。这些结构和热力学研究表明,EF-hand基序可以容纳几个具有相似结合亲和力的重原子。Ca2+与第1、2和4位的结合以及Ba2+与第1、2、4和5位的结合都是由焓和熵驱动的,而Sr2+与第1、2和4位的结合仅仅是由焓驱动的,有趣的是,与ITC数据一致,Sr2+在该结构中不与水协调。对所有的金属来说,与第三位的结合都是由熵驱动的。结论:在能量上,Ca2+在三个位点上优先存在,而Ba2+在一个位点上具有更好的结合能。EF手基序中的Sr2+配位与天然Ca2+结合结构相似,除了缺乏水配位。Sr2+配位似乎是自然界中预先形成的,因为所有7个配位原子都来自蛋白质本身,这也与Sr2+结合的熵贡献有关。这些发现提高了我们对金属与钙结合蛋白的结合以及金属诱导的构象变化的理解。
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BMC Biophysics
BMC Biophysics BIOPHYSICS-
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