Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry, University of Western Ontario, London, Ontario, Canada.
Temerty Faculty of Medicine, University of Toronto, Toronto, Canada.
Protein Sci. 2021 Apr;30(4):855-872. doi: 10.1002/pro.4042. Epub 2021 Mar 2.
Leucine Zipper EF-hand containing transmembrane protein-1 (LETM1) is an inner mitochondrial membrane protein that mediates mitochondrial calcium (Ca )/proton exchange. The matrix residing carboxyl (C)-terminal domain contains a sequence identifiable EF-hand motif (EF1) that is highly conserved among orthologues. Deletion of EF1 abrogates LETM1 mediated mitochondrial Ca flux, highlighting the requirement of EF1 for LETM1 function. To understand the mechanistic role of this EF-hand in LETM1 function, we characterized the biophysical properties of EF1 in isolation. Our data show that EF1 exhibits α-helical secondary structure that is augmented in the presence of Ca . Unexpectedly, EF1 features a weak (~mM), but specific, apparent Ca -binding affinity, consistent with the canonical Ca coordination geometry, suggested by our solution NMR. The low affinity is, at least in part, due to an Asp at position 12 of the binding loop, where mutation to Glu increases the affinity by ~4-fold. Further, the binding affinity is sensitive to pH changes within the physiological range experienced by mitochondria. Remarkably, EF1 unfolds at high and low temperatures. Despite these unique EF-hand properties, Ca binding increases the exposure of hydrophobic regions, typical of EF-hands; however, this Ca -induced conformational change shifts EF1 from a monomer to higher order oligomers. Finally, we showed that a second, putative EF-hand within LETM1 is unreactive to Ca either in isolation or tandem with EF1. Collectively, our data reveal that EF1 is structurally and biophysically responsive to pH, Ca and temperature, suggesting a role as a multipartite environmental sensor within LETM1.
亮氨酸拉链 EF 手跨膜蛋白 1(LETM1)是一种位于线粒体内膜的蛋白,介导线粒体钙(Ca )/质子交换。基质定位的羧基(C)末端结构域包含一个可识别的 EF 手模体(EF1)序列,在同源物中高度保守。EF1 缺失可阻断 LETM1 介导的线粒体 Ca 流,突出了 EF1 对 LETM1 功能的必要性。为了理解该 EF 手在 LETM1 功能中的作用机制,我们对 EF1 进行了单独的物理化学特性分析。我们的数据表明,EF1 具有 α-螺旋二级结构,在 Ca 存在下增强。出乎意料的是,EF1 具有较弱(~mM)但特异性的表观 Ca 结合亲和力,与我们的溶液 NMR 所建议的典型 Ca 配位几何结构一致。低亲和力至少部分归因于结合环中第 12 位的 Asp,突变至 Glu 可使亲和力增加约 4 倍。此外,结合亲和力对线粒体经历的生理范围内的 pH 变化敏感。值得注意的是,EF1 在高温和低温下都会展开。尽管 EF1 具有这些独特的特性,但 Ca 结合增加了疏水区的暴露,这是 EF 手的典型特征;然而,这种 Ca 诱导的构象变化使 EF1 从单体转变为更高阶的寡聚物。最后,我们表明 LETM1 内的第二个假定 EF 手在单独或与 EF1 串联时都对 Ca 无反应。总之,我们的数据表明 EF1 对 pH、Ca 和温度在结构和物理化学上具有响应性,提示其在 LETM1 中作为多部分环境传感器发挥作用。