一个保守的天冬酰胺残基稳定了曼杜鹃转铁蛋白-1中的铁结合。

IF 3.2 2区 农林科学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Insect Biochemistry and Molecular Biology Pub Date : 2024-03-16 DOI:10.1016/j.ibmb.2024.104109
Jacob J. Weber, Brian V. Geisbrecht, Michael R. Kanost, Maureen J. Gorman
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摘要

转铁蛋白 1(Tsf1)是一种昆虫特异性铁结合蛋白,在血淋巴和其他细胞外液中含量丰富。它在中性 pH 值下与铁紧密结合,在酸性条件下释放铁。Tsf1 影响铁在体内的分布,并防止感染。要阐明 Tsf1 实现这些功能的机制,需要了解 Tsf1 如何结合和释放铁。此前,从肉毒曼陀罗中结晶出的 Tsf1 被证明具有一种新型的铁配位,其中涉及四个铁结合配体:两个酪氨酸残基(Tyr90 和 Tyr204)、一个埋藏的碳酸阴离子和一个暴露在溶剂中的碳酸阴离子。暴露在溶剂中的碳酸阴离子与一个氨基酸残基结合,该残基是位于 121 位的高度保守的天冬酰胺(Asn121);因此,我们预测 Asn121 对于高亲和性铁结合至关重要。为了验证这一假设,我们分析了五种形式重组 Tsf1 的铁结合和释放特性:野生型、Y90F/Y204F 双突变体(阴性对照)和三种 Asn121 突变体(N121A、N121D 和 N121S)。每个 Asn121 突变体的光谱特性都发生了改变,证实 Asn121 对铁配位有贡献。N121D和N121S突变体对铁的亲和力略低,尤其是在酸性pH值下,而N121A突变体与铁的结合和释放与野生型蛋白无异。尽管Asn121在不同的昆虫物种中具有高度的保守性,但突变Asn121的后果却出人意料地轻微,这表明Asn121可能在体内起着重要的作用,但在体外对高亲和力的铁结合却不是必需的。
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A conserved asparagine residue stabilizes iron binding in Manduca sexta transferrin-1

Transferrin 1 (Tsf1) is an insect-specific iron-binding protein that is abundant in hemolymph and other extracellular fluids. It binds iron tightly at neutral pH and releases iron under acidic conditions. Tsf1 influences the distribution of iron in the body and protects against infection. Elucidating the mechanisms by which Tsf1 achieves these functions will require an understanding of how Tsf1 binds and releases iron. Previously, crystallized Tsf1 from Manduca sexta was shown to have a novel type of iron coordination that involves four iron-binding ligands: two tyrosine residues (Tyr90 and Tyr204), a buried carbonate anion, and a solvent-exposed carbonate anion. The solvent-exposed carbonate anion was bound by a single amino acid residue, a highly conserved asparagine at position 121 (Asn121); thus, we predicted that Asn121 would be essential for high-affinity iron binding. To test this hypothesis, we analyzed the iron-binding and -release properties of five forms of recombinant Tsf1: wild-type, a Y90F/Y204F double mutant (negative control), and three Asn121 mutants (N121A, N121D and N121S). Each of the Asn121 mutants exhibited altered spectral properties, confirming that Asn121 contributes to iron coordination. The N121D and N121S mutations resulted in slightly lower affinity for iron, especially at acidic pH, while iron binding and release by the N121A mutant was indistinguishable from that of the wild-type protein. The surprisingly minor consequences of mutating Asn121, despite its high degree of conservation in diverse insect species, suggest that Asn121 may play a role that is essential in vivo but non-essential for high affinity iron binding in vitro.

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来源期刊
CiteScore
7.40
自引率
5.30%
发文量
105
审稿时长
40 days
期刊介绍: This international journal publishes original contributions and mini-reviews in the fields of insect biochemistry and insect molecular biology. Main areas of interest are neurochemistry, hormone and pheromone biochemistry, enzymes and metabolism, hormone action and gene regulation, gene characterization and structure, pharmacology, immunology and cell and tissue culture. Papers on the biochemistry and molecular biology of other groups of arthropods are published if of general interest to the readership. Technique papers will be considered for publication if they significantly advance the field of insect biochemistry and molecular biology in the opinion of the Editors and Editorial Board.
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Identification of a gene promoter active in Lucilia sericata larval salivary glands using a rapid transient expression assay. In vivo RNAi screening identifies multiple deubiquitinases required for the maintenance of intestinal homeostasis in Drosophila. JAK and STAT5B mediate olfactory response of migratory locusts to their own volatiles. Functional redundancy of the three insulin receptors of cockroaches. Editorial Board
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