Department of Biotechnology, University of Verona, Strada Le Grazie 15, 37134 Verona, Italy.
Biochem J. 2020 Jan 17;477(1):173-189. doi: 10.1042/BCJ20190674.
Arabidopsis centrin 2, also known as calmodulin-like protein 19 (CML19), is a member of the EF-hand superfamily of calcium (Ca2+)-binding proteins. In addition to the notion that CML19 interacts with the nucleotide excision repair protein RAD4, CML19 was suggested to be a component of the transcription export complex 2 (TREX-2) by interacting with SAC3B. However, the molecular determinants of this interaction have remained largely unknown. Herein, we identified a CML19-binding site within the C-terminus of SAC3B and characterized the binding properties of the corresponding 26-residue peptide (SAC3Bp), which exhibits the hydrophobic triad centrin-binding motif in a reversed orientation (I8W4W1). Using a combination of spectroscopic and calorimetric experiments, we shed light on the SAC3Bp-CML19 complex structure in solution. We demonstrated that the peptide interacts not only with Ca2+-saturated CML19, but also with apo-CML19 to form a protein-peptide complex with a 1 : 1 stoichiometry. Both interactions involve hydrophobic and electrostatic contributions and include the burial of Trp residues of SAC3Bp. However, the peptide likely assumes different conformations upon binding to apo-CML19 or Ca2+-CML19. Importantly, the peptide dramatically increases the affinity for Ca2+ of CML19, especially of the C-lobe, suggesting that in vivo the protein would be Ca2+-saturated and bound to SAC3B even at resting Ca2+-levels. Our results, providing direct evidence that Arabidopsis SAC3B is a CML19 target and proposing that CML19 can bind to SAC3B through its C-lobe independent of a Ca2+ stimulus, support a functional role for these proteins in TREX-2 complex and mRNA export.
拟南芥中心体蛋白 2,也称为钙调蛋白样蛋白 19(CML19),是钙(Ca2+)结合蛋白 EF 手超家族的成员。除了 CML19 与核苷酸切除修复蛋白 RAD4 相互作用的观点外,CML19 还通过与 SAC3B 相互作用被认为是转录输出复合物 2(TREX-2)的组成部分。然而,这种相互作用的分子决定因素在很大程度上仍然未知。在此,我们在 SAC3B 的 C 端鉴定了一个 CML19 结合位点,并对相应的 26 个残基肽(SAC3Bp)的结合特性进行了表征,该肽以反转的取向(I8W4W1)表现出中心体结合基序的疏水性三联体。使用光谱和量热实验的组合,我们阐明了溶液中 SAC3Bp-CML19 复合物的结构。我们证明该肽不仅与 Ca2+-饱和的 CML19 相互作用,而且还与 apo-CML19 相互作用,以 1:1 的化学计量比形成蛋白-肽复合物。两种相互作用都涉及疏水和静电贡献,包括 SAC3Bp 的色氨酸残基的埋藏。然而,肽在结合 apo-CML19 或 Ca2+-CML19 时可能会呈现不同的构象。重要的是,该肽显著增加了 CML19 对 Ca2+的亲和力,尤其是 C 结构域,这表明在体内,该蛋白即使在静止 Ca2+水平下也将是 Ca2+-饱和的并与 SAC3B 结合。我们的结果提供了直接证据,表明拟南芥 SAC3B 是 CML19 的靶标,并提出 CML19 可以通过其 C 结构域独立于 Ca2+刺激与 SAC3B 结合,支持这些蛋白在 TREX-2 复合物和 mRNA 输出中的功能作用。