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LINC complexes form by binding of three KASH peptides to domain interfaces of trimeric SUN proteins

机译:LINC复合物通过三个KASH肽与三聚体SUN蛋白的结构域界面结合而形成

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摘要

Linker of nucleoskeleton and cytoskeleton (LINC) complexes span the nuclear envelope and are composed of KASH and SUN proteins residing in the outer and inner nuclear membrane, respectively. LINC formation relies on direct binding of KASH and SUN in the perinuclear space. Thereby, molecular tethers are formed that can transmit forces for chromosome movements, nuclear migration, and anchorage. We present crystal structures of the human SUN2-KASH1/2 complex, the core of the LINC complex. The SUN2 domain is rigidly attached to a trimeric coiled coil that prepositions it to bind three KASH peptides. The peptides bind in three deep and expansive grooves formed between adjacent SUN domains, effectively acting as molecular glue. In addition, a disulfide between conserved cysteines on SUN and KASH covalently links both proteins. The structure provides the basis of LINC complex formation and suggests a model for how LINC complexes might arrange into higher-order clusters to enhance force-coupling.
机译:核骨架和细胞骨架(LINC)复合物的连接子横跨核被膜,分别由位于外核膜和内核膜中的KASH和SUN蛋白组成。 LINC的形成依赖于核周空间中KASH和SUN的直接结合。由此,形成分子系链,其可以传递用于染色体运动,核迁移和锚定的力。我们介绍了人类SUN2-KASH1 / 2复合体(LINC复合体的核心)的晶体结构。 SUN2结构域牢固地连接到三聚体螺旋形线圈上,该线圈形体将其预设为结合三个KASH肽。肽结合在相邻SUN结构域之间形成的三个深而宽的凹槽中,有效地充当了分子胶。此外,SUN和KASH上保守的半胱氨酸之间的二硫键共价连接两种蛋白质。该结构提供了LINC配合物形成的基础,并为LINC配合物如何排列成高阶簇以增强力耦合提供了模型。

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