A first structural model for covalent dimerization of S100 proteins.

IF 1.1 4区 生物学 Q4 BIOCHEMICAL RESEARCH METHODS
Maria Demou, Laure Yatime
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引用次数: 0

Abstract

Extracellular S100 proteins act as alarmins and trigger pro-inflammatory signaling cascades by activating cognate cell-surface receptors such as the receptor for advanced glycation end-products (RAGE), thereby contributing to both normal and pathological inflammation depending on the physiological context. These ligand-receptor interactions occur in an oxidative environment that is known to induce post-translational modifications, notably on the cysteine residues present in S100 proteins, giving rise to disulfide-crosslinked S100 species. The fine molecular architecture of these S100 covalent assemblies and their impact on the interaction of S100 with RAGE remains poorly characterized, as most in vitro studies employ cysteine variants or reducing conditions. In this study, a thorough analysis of cysteine conservation within the whole S100 family shows an enriched presence of cysteines in the second half of helix H4, with a hotspot for cysteine occupancy at position 84. Following the introduction of a cysteine at this conserved position in S100A6, SDS-PAGE analysis under nonreducing conditions shows a noteworthy amount of covalent S100A6 Y84C dimer in solution, and the structural analysis of the resulting complex with the RAGE ectodomain reveals the formation of a covalent Cys84-Cys84 linkage between the two S100A6 protomers, thus stabilizing the dimeric conformation of RAGE-bound S100A6. Modeling of other S100 proteins that naturally bear a Cys84 in the RAGE-bound conformation suggests that this covalent S100 dimer architecture may be adopted by other members of the family previously reported to form disulfide-crosslinked species. Altogether, these findings provide a first possible model for S100 covalent homodimerization that is fully compatible with RAGE binding.

S100蛋白共价二聚化的第一个结构模型。
细胞外S100蛋白作为警报器,通过激活同源细胞表面受体,如晚期糖基化终产物受体(RAGE),触发促炎信号级联反应,从而根据生理环境导致正常和病理炎症。这些配体-受体相互作用发生在氧化环境中,已知会诱导翻译后修饰,特别是S100蛋白中存在的半胱氨酸残基,从而产生二硫交联S100物种。这些S100共价组合的精细分子结构及其对S100与RAGE相互作用的影响仍然知之甚少,因为大多数体外研究采用半胱氨酸变异体或还原条件。在本研究中,对整个S100家族的半胱氨酸保守性进行了深入分析,发现半胱氨酸在螺旋H4的后半部分富集,其中半胱氨酸占据的热点位于84号位置。在S100A6的这个保守位置引入半胱氨酸后,非还原条件下的SDS-PAGE分析显示溶液中有大量的共价S100A6 Y84C二聚体,并且通过RAGE外结构域复合物的结构分析显示两个S100A6原体之间形成了共价Cys84-Cys84键,从而稳定了RAGE结合的S100A6二聚体构象。对rage结合构象中天然携带Cys84的其他S100蛋白的建模表明,这种共价S100二聚体结构可能被先前报道的形成二硫交联物种的家族其他成员所采用。总之,这些发现为S100共价同二聚化提供了第一个可能的模型,该模型与RAGE结合完全兼容。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta crystallographica. Section F, Structural biology communications
Acta crystallographica. Section F, Structural biology communications BIOCHEMICAL RESEARCH METHODSBIOCHEMISTRY &-BIOCHEMISTRY & MOLECULAR BIOLOGY
CiteScore
1.90
自引率
0.00%
发文量
95
期刊介绍: Acta Crystallographica Section F is a rapid structural biology communications journal. Articles on any aspect of structural biology, including structures determined using high-throughput methods or from iterative studies such as those used in the pharmaceutical industry, are welcomed by the journal. The journal offers the option of open access, and all communications benefit from unlimited free use of colour illustrations and no page charges. Authors are encouraged to submit multimedia content for publication with their articles. Acta Cryst. F has a dedicated online tool called publBio that is designed to make the preparation and submission of articles easier for authors.
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