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Characterization of Molecular Determinants of the Conformational Stability of Macrophage Migration Inhibitory Factor: Leucine 46 Hydrophobic Pocket

机译:亮氨酸46疏水口袋:巨噬细胞移动抑制因子的结构稳定性的分子因素的表征

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摘要

Macrophage Migration Inhibitory Factor (MIF) is a key mediator of inflammatory responses and innate immunity and has been implicated in the pathogenesis of several inflammatory and autoimmune diseases. The oligomerization of MIF, more specifically trimer formation, is essential for its keto-enol tautomerase activity and probably mediates several of its interactions and biological activities, including its binding to its receptor CD74 and activation of certain signaling pathways. Therefore, understanding the molecular factors governing the oligomerization of MIF and the role of quaternary structure in modulating its structural stability and multifunctional properties is crucial for understanding the function of MIF in health and disease. Herein, we describe highly conserved intersubunit interactions involving the hydrophobic packing of the side chain of Leu46 onto the β-strand β3 of one monomer within a hydrophobic pocket from the adjacent monomer constituted by residues Arg11, Val14, Phe18, Leu19, Val39, His40, Val41, Val42, and Pro43. To elucidate the structural significance of these intersubunit interactions and their relative contribution to MIF’s trimerization, structural stability and catalytic activity, we generated three point mutations where Leu46 was replaced by glycine (L46G), alanine (L46A) and phenylalanine (L46F), and their structural properties, stability, oligomerization state, and catalytic activity were characterized using a battery of biophysical methods and X-ray crystallography. Our findings provide new insights into the role of the Leu46 hydrophobic pocket in stabilizing the conformational state of MIF in solution. Disrupting the Leu46 hydrophobic interaction perturbs the secondary and tertiary structure of the protein but has no effect on its oligomerization state.
机译:巨噬细胞迁移抑制因子(MIF)是炎症反应和先天免疫的关键介体,并与几种炎症和自身免疫性疾病的发病机制有关。 MIF的寡聚化,更具体地说是三聚体的形成,对于其酮-烯醇互变异构酶活性至关重要,并且可能介导了几种相互作用和生物学活性,包括其与受体CD74的结合以及某些信号通路的激活。因此,了解控制MIF寡聚化的分子因素以及四级结构在调节其结构稳定性和多功能特性中的作用对于了解MIF在健康和疾病中的功能至关重要。在本文中,我们描述了高度保守的亚基相互作用,涉及Leu46侧链的疏水性堆积到一个疏水口袋中一个单体的β-链β3上,该疏水性口袋由相邻残基Arg11,Val14,Phe18,Leu19,Val39,His40, Val41,Val42和Pro43。为了阐明这些亚基间相互作用的结构重要性及其对MIF三聚化,结构稳定性和催化活性的相对贡献,我们产生了三个点突变,其中Leu46被甘氨酸(L46G),丙氨酸(L46A)和苯丙氨酸(L46F)取代,使用一系列生物物理方法和X射线晶体学对结构性能,稳定性,低聚状态和催化活性进行了表征。我们的发现为Leu46疏水口袋在稳定溶液中MIF构象状态方面的作用提供了新的见解。破坏Leu46疏水相互作用扰乱了蛋白质的二级和三级结构,但对其寡聚化状态没有影响。

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