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Structure-function analysis of the human ferroportin iron exporter (SLC40A1): Effect of hemochromatosis Type 4 disease mutations and identification of critical residues

机译:人类铁转运蛋白铁输出物(SLC40A1)的结构功能分析:血色素沉着症4型疾病突变的影响和关键残基的鉴定

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Ferroportin (SLC40A1) is the only known iron exporter in mammals and is considered a key coordinator of the iron balance between intracellular and systemic iron homeostasis. However, the structural organization of ferroportin in the lipid bilayer remains controversial and very little is known about the mechanism underlying iron egress. In the present study, we have developed an approach based on comparative modeling, which has led to the construction of a model of the three-dimensional (3D) structure of ferroportin by homology to the crystal structure of a Major Facilitator Superfamily member (EmrD). This model predicts atomic details for the organization of ferroportin transmembrane helices and is in agreement with our current understanding of the ferroportin function and its interaction with hepcidin. Using in vitro experiments, we demonstrate that this model can be used to identify novel critical amino acids. In particular, we show that the tryptophan residue 42 (p.Trp42), which is localized within the extracellular end of the ferroportin pore, is likely involved in both the iron export function and in the mechanism of inhibition by hepcidin. Thus, our 3D model provides a new perspective for understanding the molecular basis of ferroportin functions and dysfunctions.
机译:Ferroportin(SLC40A1)是哺乳动物中唯一已知的铁出口者,被认为是细胞内和体内铁稳态之间铁平衡的关键协调者。但是,铁转运蛋白在脂质双层中的结构组织仍存在争议,对铁逸出的潜在机制了解甚少。在本研究中,我们开发了一种基于比较模型的方法,该方法通过与主要促进者超家族成员(EmrD)的晶体结构同源性,构建了铁转运蛋白的三维(3D)结构模型。该模型预测了铁转运蛋白跨膜螺旋组织的原子细节,并且与我们目前对铁转运蛋白功能及其与铁调素的相互作用的理解是一致的。使用体外实验,我们证明了该模型可用于鉴定新型关键氨基酸。特别是,我们显示色氨酸残基42(p.Trp42)位于铁转运蛋白孔的细胞外端,可能既参与铁的输出功能,又参与铁调素的抑制作用。因此,我们的3D模型为了解铁转运蛋白功能和功能障碍的分子基础提供了新的视角。

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