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LINCing complex functions at the nuclear envelope

机译:在核层上实现复杂功能

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Linker of nucleoskeleton and cytoskeleton (LINC) complexes span the double membrane of the nuclear envelope (NE) and physically connect nuclear structures to cytoskeletal elements. LINC complexes are envisioned as force transducers in the NE, which facilitate processes like nuclear anchorage and migration, or chromosome movements. The complexes are built from members of two evolutionary conserved families of transmembrane (TM) proteins, the SUN (Sad1/UNC-84) domain proteins in the inner nuclear membrane (INM) and the KASH (Klarsicht/ANC-1/SYNE homology) domain proteins in the outer nuclear membrane (ONM). In the lumen of the NE, the SUN and KASH domains engage in an intimate assembly to jointly form a NE bridge. Detailed insights into the molecular architecture and atomic structure of LINC complexes have recently revealed the molecular basis of nucleo-cytoskeletal coupling. They bear important implications for LINC complex function and suggest new potential and as yet unexplored roles, which the complexes may play in the cell.
机译:核骨架和细胞骨架(LINC)复合物的连接物横跨核被膜(NE)的双层膜,并将核结构物理连接到细胞骨架元素。 LINC复合体被设想为NE中的力传感器,可促进诸如核锚定和迁移或染色体移动等过程。该复合物由跨膜蛋白的两个进化保守家族的成员构建而成,即内核膜(INM)中的SUN(Sad1 / UNC-84)域蛋白和KASH(Klarsicht / ANC-1 / SYNE同源性)外核膜(ONM)中的结构域蛋白。在NE的管腔中,SUN和KASH域参与紧密的组装,共同形成NE桥。 LINC配合物的分子结构和原子结构的详细见解最近揭示了核-细胞骨架偶联的分子基础。它们对LINC复合物功能具有重要意义,并暗示了复合物可能在细胞中发挥的新潜力和尚未探索的作用。

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