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PDLIM1 蛋白 LIM 结构域对锌离子的亲和力达到飞摩尔级,揭示了蛋白质-蛋白质相互作用对蛋白质稳定性的重要贡献。

Femtomolar Zn2+ affinity of LIM domain of PDLIM1 protein uncovers crucial contribution of protein-protein interactions to protein stability.

机构信息

Department of Protein Engineering, Faculty of Biotechnology, University of Wrocław, Tamka 2, 50-137 Wrocław, Poland.

出版信息

J Inorg Biochem. 2012 Oct;115:28-35. doi: 10.1016/j.jinorgbio.2012.05.009. Epub 2012 Jun 2.

DOI:10.1016/j.jinorgbio.2012.05.009
PMID:22922308
Abstract

An individual LIM domain has approximately 55 amino acids with 8 highly conserved residues responsible for binding of two Zn(2+) into two distinct zinc finger motifs. We examined LIM domain stability of PDLIM1 protein (known also as Elfin protein), its C-terminally extended constructs as well as separate zinc fingers, and several full domain mutants in terms of Zn(2+) affinity and domain stability. Thermal denaturation, mass spectrometry, limited proteolysis, protein oxidation and circular dichroism techniques were used to determine a set of thermodynamic stability parameters. The results demonstrate unambiguously very high (femtomolar) affinity of both Zn(2+) to the conserved LIM domain (K(d)(av)=2.5×10(-14) M) and its additional elevation in the C-terminally extended domain construct (K(d)(av)=3.1×10(-15) M). We demonstrate in the example of PDLIM1 using a set of LIM protein constructs and its zinc finger peptides that stability of the entire zinc-containing domain is not only defined by the Zn(2+) coordination environment but significantly depends on the set of protein-protein interactions with the C-terminus of the protein. We discuss structural similarities of LIM domains and suggest the prolongation of the conserved LIM sequence to its C-terminal helix that has a significant impact on domain stability. We also discuss the functionality of LIM domains in terms of different physiological zinc and redox buffering capacity.

摘要

单个 LIM 结构域约有 55 个氨基酸,其中 8 个高度保守的残基负责结合两个 Zn(2+)进入两个不同的锌指基序。我们检查了 PDLIM1 蛋白(也称为 Elf in 蛋白)及其 C 端延伸结构域以及单独锌指的 LIM 结构域稳定性,以及几个完整结构域突变体的 Zn(2+)亲和力和结构域稳定性。使用热变性、质谱、有限蛋白水解、蛋白质氧化和圆二色性技术来确定一组热力学稳定性参数。结果明确表明,两个 Zn(2+)与保守的 LIM 结构域(K(d)(av)=2.5×10(-14) M)的亲和力非常高(皮摩尔),并且在 C 端延伸结构域构建体中的亲和力进一步提高(K(d)(av)=3.1×10(-15) M)。我们以 PDLIM1 为例,使用一组 LIM 蛋白构建体及其锌指肽,证明整个含锌结构域的稳定性不仅由 Zn(2+)配位环境决定,而且还取决于与蛋白质 C 端的一系列蛋白质-蛋白质相互作用。我们讨论了 LIM 结构域的结构相似性,并提出了保守的 LIM 序列向其 C 端螺旋的延长,这对结构域稳定性有重大影响。我们还根据不同的生理锌和氧化还原缓冲能力讨论了 LIM 结构域的功能。

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