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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Human S100A3 tetramerization propagates Ca2+/Zn2+ binding states
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Human S100A3 tetramerization propagates Ca2+/Zn2+ binding states

机译:人S100A3四聚化可传播Ca2 + / Zn2 +结合状态

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摘要

The S100A3 homotetramer assembles upon citrullination of a specific symmetric Arg51 pair on its homodimer interface in human hair cuticular cells. Each S100A3 subunit contains two EF-hand-type Ca2+-binding motifs and one (Cys)3His-type Zn2+-binding site in the C-terminus. The C-terminal coiled domain is cross-linked to the presumed docking surface of the dimeric S100A3 via a disulfide bridge. The aim of this study was to determine the structural and functional role of the C-terminal Zn2+-binding domain, which is unique to S100A3, in homotetramer assembly. The binding of either Ca2+ or Zn2+ reduced the α-helix content of S100A3 and modulated its affinity for the other cation. The binding of a single Zn2+ accelerated the Ca2+-dependent tetramerization of S100A3 while inducing an extensive unfolding of helix IV. The Ca2+ and Zn2+ binding affinities of S100A3 were enhanced when the other cation bound in concert with the tetramerization of S100A3. Small angle scattering analyses revealed that the overall structure of the S100A3 tetramer bound both Ca2+ and Zn2+ had a similar molecular shape to the Ca2+-bound form in solution. The binding states of the Ca2+ or Zn2+ to each S100A3 subunit within a homotetramer appear to be propagated by sensing the repositioning of helix III and the rearrangement of the C-terminal tail domain. This article is part of a Special Issue entitled: 12th European Symposium on Calcium.
机译:S100A3同四聚体在人的毛发表皮细胞的同二聚体界面上特异性对称的Arg51对瓜氨酸化后组装。每个S100A3亚基在C端均包含两个EF手型Ca2 +结合基序和一个(Cys)3His型Zn2 +结合位点。 C端螺旋结构域通过二硫键交联至二聚体S100A3的对接表面。这项研究的目的是确定同四聚体组装中C末端Zn2 +结合域的结构和功能作用,这对S100A3是唯一的。 Ca2 +或Zn2 +的结合降低了S100A3的α-螺旋含量,并调节了其对其他阳离子的亲和力。单个Zn2 +的结合加速了S100A3的Ca2 +依赖性四聚化,同时诱导了螺旋IV的广泛展开。当另一个阳离子与S100A3的四聚化结合时,S100A3的Ca2 +和Zn2 +结合亲和力增强。小角度散射分析表明,结合Ca2 +和Zn2 +的S100A3四聚体的整体结构具有与溶液中Ca2 +结合形式相似的分子形状。 Ca 2+或Zn 2+与同型四聚体中每个S100A3亚基的结合状态似乎通过感测螺旋III的重新定位和C端尾结构域的重排而传播。本文是名为“第十二届欧洲钙研讨会”的特刊的一部分。

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