Cousido-Siah Alexandra, Ayoub Daniel, Berberián Graciela, Bollo Mariana, Van Dorsselaer Alain, Debaene François, DiPolo Reinaldo, Petrova Tatiana, Schulze-Briese Clemens, Olieric Vincent, Esteves Adriana, Mitschler André, Sanglier-Cianférani Sarah, Beaugé Luis, Podjarny Alberto
Department of Structural Biology and Genomics, IGBMC, CNRS, INSERM, Université de Strasbourg, Illkirch, France.
Acta Crystallogr D Biol Crystallogr. 2012 Sep;68(Pt 9):1098-107. doi: 10.1107/S090744491202094X. Epub 2012 Aug 18.
The protein ReP1-NCXSQ was isolated from the cytosol of squid nerves and has been shown to be required for MgATP stimulation of the squid nerve Na(+)/Ca(2+) exchanger NCXSQ1. In order to determine its mode of action and the corresponding biologically active ligand, sequence analysis, crystal structures and mass-spectrometric studies of this protein and its Tyr128Phe mutant are reported. Sequence analysis suggests that it belongs to the CRABP family in the FABP superfamily. The X-ray structure at 1.28 Å resolution shows the FABP β-barrel fold, with a fatty acid inside the barrel that makes a relatively short hydrogen bond to Tyr128 and shows a double bond between C9 and C10 but that is disordered beyond C12. Mass-spectrometric studies identified this fatty acid as palmitoleic acid, confirming the double bond between C9 and C10 and establishing a length of 16 C atoms in the aliphatic chain. This acid was caught inside during the culture in Escherichia coli and therefore is not necessarily linked to the biological activity. The Tyr128Phe mutant was unable to activate the Na(+)/Ca(2+) exchanger and the corresponding crystal structure showed that without the hydrogen bond to Tyr128 the palmitoleic acid inside the barrel becomes disordered. Native mass-spectrometric analysis confirmed a lower occupancy of the fatty acid in the Tyr128Phe mutant. The correlation between (i) the lack of activity of the Tyr128Phe mutant, (ii) the lower occupancy/disorder of the bound palmitoleic acid and (iii) the mass-spectrometric studies of ReP1-NCXSQ suggests that the transport of a fatty acid is involved in regulation of the NCXSQ1 exchanger, providing a novel insight into the mechanism of its regulation. In order to identify the biologically active ligand, additional high-resolution mass-spectrometric studies of the ligands bound to ReP1-NCXSQ were performed after incubation with squid nerve vesicles both with and without MgATP. These studies clearly identified palmitic acid as the fatty acid involved in regulation of the Na(+)/Ca(2+) exchanger from squid nerve.
蛋白质ReP1-NCXSQ是从鱿鱼神经的胞质溶胶中分离出来的,已证明它是MgATP刺激鱿鱼神经钠/钙交换蛋白NCXSQ1所必需的。为了确定其作用方式和相应的生物活性配体,本文报道了对该蛋白质及其Tyr128Phe突变体的序列分析、晶体结构和质谱研究。序列分析表明,它属于FABP超家族中的CRABP家族。分辨率为1.28 Å的X射线结构显示了FABP β桶折叠,桶内有一个脂肪酸,该脂肪酸与Tyr128形成相对较短的氢键,在C9和C10之间显示出一个双键,但在C12之后无序。质谱研究确定该脂肪酸为棕榈油酸,证实了C9和C10之间的双键,并确定脂肪链中有16个碳原子。这种酸是在大肠杆菌培养过程中被捕获在内部的,因此不一定与生物活性相关。Tyr128Phe突变体无法激活钠/钙交换蛋白,相应的晶体结构表明,由于没有与Tyr128的氢键,桶内的棕榈油酸变得无序。原生质谱分析证实了Tyr128Phe突变体中脂肪酸的占有率较低。Tyr128Phe突变体缺乏活性、结合的棕榈油酸占有率较低/无序以及对ReP1-NCXSQ的质谱研究之间的相关性表明,脂肪酸的转运参与了NCXSQ1交换蛋白的调节,为其调节机制提供了新的见解。为了鉴定生物活性配体,在与有和没有MgATP的鱿鱼神经囊泡孵育后,对与ReP1-NCXSQ结合的配体进行了额外的高分辨率质谱研究。这些研究清楚地确定棕榈酸是参与鱿鱼神经钠/钙交换蛋白调节的脂肪酸。