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肌动蛋白交联蛋白细丝蛋白中两个新型免疫球蛋白样结构域对的原子结构。

Atomic structures of two novel immunoglobulin-like domain pairs in the actin cross-linking protein filamin.

作者信息

Heikkinen Outi K, Ruskamo Salla, Konarev Peter V, Svergun Dmitri I, Iivanainen Tatu, Heikkinen Sami M, Permi Perttu, Koskela Harri, Kilpeläinen Ilkka, Ylänne Jari

机构信息

Department of Chemistry, University of Helsinki, FI-00014 Helsinki, Finland.

出版信息

J Biol Chem. 2009 Sep 11;284(37):25450-8. doi: 10.1074/jbc.M109.019661. Epub 2009 Jul 21.

Abstract

Filamins are actin filament cross-linking proteins composed of an N-terminal actin-binding domain and 24 immunoglobulin-like domains (IgFLNs). Filamins interact with numerous proteins, including the cytoplasmic domains of plasma membrane signaling and cell adhesion receptors. Thereby filamins mechanically and functionally link the cell membrane to the cytoskeleton. Most of the interactions have been mapped to the C-terminal IgFLNs 16-24. Similarly, as with the previously known compact domain pair of IgFLNa20-21, the two-domain fragments IgFLNa16-17 and IgFLNa18-19 were more compact in small angle x-ray scattering analysis than would be expected for two independent domains. Solution state NMR structures revealed that the domain packing in IgFLNa18-19 resembles the structure of IgFLNa20-21. In both domain pairs the integrin-binding site is masked, although the details of the domain-domain interaction are partly distinct. The structure of IgFLNa16-17 revealed a new domain packing mode where the adhesion receptor binding site of domain 17 is not masked. Sequence comparison suggests that similar packing of three tandem filamin domain pairs is present throughout the animal kingdom, and we propose that this packing is involved in the regulation of filamin interactions through a mechanosensor mechanism.

摘要

细丝蛋白是肌动蛋白丝交联蛋白,由一个N端肌动蛋白结合结构域和24个免疫球蛋白样结构域(IgFLNs)组成。细丝蛋白与众多蛋白质相互作用,包括质膜信号传导和细胞粘附受体的胞质结构域。由此,细丝蛋白在机械和功能上将细胞膜与细胞骨架连接起来。大多数相互作用已定位到C端的IgFLNs 16 - 24。同样,与先前已知的紧密结构域对IgFLNa20 - 21一样,在小角X射线散射分析中,两个结构域片段IgFLNa16 - 17和IgFLNa18 - 19比两个独立结构域预期的更为紧密。溶液状态核磁共振结构表明,IgFLNa18 - 19中的结构域堆积类似于IgFLNa20 - 21的结构。在这两个结构域对中,整合素结合位点均被掩盖,尽管结构域 - 结构域相互作用的细节部分不同。IgFLNa16 - 17的结构揭示了一种新的结构域堆积模式,其中结构域17的粘附受体结合位点未被掩盖。序列比较表明,在整个动物界都存在三个串联细丝蛋白结构域对的类似堆积,我们提出这种堆积通过机械传感机制参与细丝蛋白相互作用的调节。

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