Dipartimento di Scienze e Tecnologie Chimiche, Università di Roma "Tor Vergata", Rome, Italy.
Dipartimento di Scienze biotecnologiche di Base, cliniche intensivologiche e perioperatorie, Università Cattolica del Sacro Cuore, Rome, Italy.
Sci Rep. 2023 Aug 29;13(1):14113. doi: 10.1038/s41598-023-41064-x.
Lactoferrin, a multifunctional iron-binding protein containing 16 disulfides, is actively studied for its antibacterial and anti-carcinogenic properties. However, scarce information is nowadays available about its oxidative folding starting from the reduced and unfolded status. This study discovers unusual properties when this protein is examined in its reduced molten globule-like conformation. Using kinetic, CD and fluorescence analyses together with mass spectrometry, we found that a few cysteines display astonishing hyper-reactivity toward different thiol reagents. In details, four cysteines (i.e. 668, 64, 512 and 424) display thousands of times higher reactivity toward GSSG but normal against other natural disulfides. The formation of these four mixed-disulfides with glutathione probably represents the first step of its folding in vivo. A widespread low pK decreases the reactivity of other 14 cysteines toward GSSG limiting their involvement in the early phase of the oxidative folding. The origin of this hyper-reactivity was due to transient lactoferrin-GSSG complex, as supported by fluorescence experiments. Lactoferrin represents another disulfide containing protein in addition to albumin, lysozyme, ribonuclease, chymotrypsinogen, and trypsinogen which shows cysteines with an extraordinary and specific hyper-reactivity toward GSSG confirming the discovery of a fascinating new feature of proteins in their nascent phase.
乳铁蛋白是一种具有 16 个二硫键的多功能铁结合蛋白,因其具有抗菌和抗癌特性而受到广泛研究。然而,目前关于其从还原和展开状态开始的氧化折叠的信息很少。本研究发现,当该蛋白处于还原的类变性球蛋白构象时,具有异常特性。通过动力学、CD 和荧光分析以及质谱分析,我们发现一些半胱氨酸对不同的巯基试剂表现出惊人的高反应性。具体来说,四个半胱氨酸(即 668、64、512 和 424)对 GSSG 的反应性高出数千倍,但对其他天然二硫键正常。这四个与谷胱甘肽形成的混合二硫键可能代表其体内折叠的第一步。广泛的低 pK 值降低了其他 14 个半胱氨酸对 GSSG 的反应性,限制了它们在氧化折叠的早期阶段的参与。这种高反应性的起源是由于瞬态乳铁蛋白-GSSG 复合物,荧光实验对此提供了支持。乳铁蛋白是除白蛋白、溶菌酶、核糖核酸酶、糜蛋白酶原和胰蛋白酶原之外的另一种含有二硫键的蛋白质,其半胱氨酸对 GSSG 表现出非凡且特定的高反应性,这证实了蛋白质在其初始阶段具有迷人的新特征。