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Structural analysis of the ternary complex between lamin A/C BAF and emerin identifies an interface disrupted in autosomal recessive progeroid diseases

机译:Lamin A / CBAF和Emerin之间三元复合物的结构分析确定了常染色体隐性早衰疾病中的界面被破坏

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摘要

Lamins are the main components of the nucleoskeleton. Whereas their 3D organization was recently described using cryoelectron tomography, no structural data highlights how they interact with their partners at the interface between the inner nuclear envelope and chromatin. A large number of mutations causing rare genetic disorders called laminopathies were identified in the C-terminal globular Igfold domain of lamins A and C. We here present a first structural description of the interaction between the lamin A/C immunoglobulin-like domain and emerin, a nuclear envelope protein. We reveal that this lamin A/C domain both directly binds self-assembled emerin and interacts with monomeric emerin LEM domain through the dimeric chromatin-associated Barrier-to-Autointegration Factor (BAF) protein. Mutations causing autosomal recessive progeroid syndromes specifically impair proper binding of lamin A/C domain to BAF, thus destabilizing the link between lamin A/C and BAF in cells. Recent data revealed that, during nuclear assembly, BAF’s ability to bridge distant DNA sites is essential for guiding membranes to form a single nucleus around the mitotic chromosome ensemble. Our results suggest that BAF interaction with lamin A/C also plays an essential role, and that mutations associated with progeroid syndromes leads to a dysregulation of BAF-mediated chromatin organization and gene expression.
机译:核纤层蛋白是核骨架的主要成分。尽管最近使用冷冻电子断层扫描描述了其3D组织,但没有结构数据能突出显示它们在核内包膜和染色质之间的界面如何与伴侣相互作用。在lamin A和C的C末端球状Igfold结构域中鉴定出大量导致罕见遗传疾病的突变,称为laminopathies。在这里,我们对lamin A / C免疫球蛋白样结构域与emerin之间的相互作用进行第一个结构描述,核包膜蛋白。我们揭示了这种层状A / C结构域既直接结合自组装的Emerin,又通过二聚体染色质相关的屏障到自动整合因子(BAF)蛋白与单体Emerin LEM结构域相互作用。导致常染色体隐性遗传性早衰综合症的突变会特别破坏层粘蛋白A / C结构域与BAF的正确结合,从而破坏细胞中层粘蛋白A / C与BAF之间的联系。最新数据显示,在核装配过程中,BAF桥接远处DNA位点的能力对于引导膜围绕有丝分裂染色体集合形成单个核至关重要。我们的结果表明,BAF与层粘蛋白A / C的相互作用也起着至关重要的作用,与早衰综合征相关的突变会导致BAF介导的染色质组织和基因表达失调。

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