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Lamin A tail modification by SUMO1 is disrupted by familial partial lipodystrophy–causing mutations

机译:SUMO1的Lamin A尾部修饰被家族性部分脂肪营养不良症致突变所破坏

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摘要

Lamin filaments are major components of the nucleoskeleton that bind LINC complexes and many nuclear membrane proteins. The tail domain of lamin A directly binds 21 known partners, including actin, emerin, and SREBP1, but how these interactions are regulated is unknown. We report small ubiquitin-like modifier 1 (SUMO1) as a major new posttranslational modification of the lamin A tail. Two SUMO1 modification sites were identified based on in vitro SUMOylation assays and studies of Cos-7 cells. One site (K420) matches the SUMO1 target consensus; the other (K486) does not. On the basis of the position of K486 on the lamin A Ig-fold, we hypothesize the SUMO1 E2 enzyme recognizes a folded structure–dependent motif that includes residues genetically linked to familial partial lipodystrophy (FPLD). Supporting this model, SUMO1-modification of the lamin A tail is reduced by two FPLD-causing mutations, G465D and K486N, and by single mutations in acidic residues E460 and D461. These results suggest a novel mode of functional control over lamin A in cells.
机译:层纤细丝是结合LINC复合物和许多核膜蛋白的核骨架的主要成分。核纤层蛋白A的尾部结构域直接结合21个已知的伴侣,包括肌动蛋白,Emerin和SREBP1,但如何调节这些相互作用尚不清楚。我们报告小的泛素样修饰符1(SUMO1)作为lamin A尾巴的主要新的翻译后修饰。基于体外SUMOylation分析和Cos-7细胞研究,确定了两个SUMO1修饰位点。一个站点(K420)符合SUMO1目标共识;另一个(K486)没有。根据lamin A Ig折叠上K486的位置,我们假设SUMO1 E2酶识别折叠的结构依赖性基序,其中包括与家族性部分脂肪营养不良症(FPLD)基因相关的残基。支持该模型,通过两个导致FPLD的突变G465D和K486N以及酸性残基E460和D461的单个突变,减少了lamin A尾巴的SUMO1修饰。这些结果表明细胞中层粘连蛋白A的功能控制的新型模式。

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