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利用全扩展显微镜观察核孔复合体可塑性

Visualizing nuclear pore complex plasticity with pan-expansion microscopy.

作者信息

Morgan Kimberly J, Carley Emma, Coyne Alyssa N, Rothstein Jeffrey D, Lusk C Patrick, King Megan C

机构信息

Department of Cell Biology, Yale School of Medicine, New Haven, CT, USA.

Brain Science Institute, Johns Hopkins University School of Medicine , Baltimore, MD, USA.

出版信息

J Cell Biol. 2025 Sep 1;224(9). doi: 10.1083/jcb.202409120. Epub 2025 Jun 12.

Abstract

The exploration of cell-type and environmentally responsive nuclear pore complex (NPC) plasticity requires new, accessible tools. Using pan-expansion microscopy (pan-ExM), NPCs were identified by machine learning-facilitated segmentation. They exhibited a large range of diameters with a bias for dilated NPCs at the basal nuclear surface in clusters suggestive of local islands of nuclear envelope tension. Whereas hyperosmotic shock constricted NPCs analogously to those found in annulate lamellae, depletion of LINC complexes specifically eliminated the modest nuclear surface diameter biases. Therefore, LINC complexes may contribute locally to nuclear envelope tension to toggle NPC diameter between dilated, but not constricted, states. Lastly, POM121 shifts from the nuclear ring to the inner ring of the NPC specifically in induced pluripotent stem cell-derived neurons from a patient with C9orf72 amyotrophic lateral sclerosis. Thus, pan-ExM is a powerful tool to visualize NPC plasticity in physiological and pathological contexts at single NPC resolution.

摘要

对细胞类型和环境响应性核孔复合体(NPC)可塑性的探索需要新的、易于使用的工具。利用全景扩展显微镜(pan-ExM),通过机器学习辅助分割来识别NPC。它们呈现出大范围的直径,且偏向于在核基部表面呈簇状扩张的NPC,这暗示了核膜张力的局部区域。高渗休克使NPC收缩,类似于在环状片层中发现的情况,而LINC复合体的缺失则特异性地消除了适度的核表面直径偏差。因此,LINC复合体可能在局部对核膜张力有贡献,从而在扩张而非收缩状态之间切换NPC直径。最后,在来自一名患有C9orf72型肌萎缩侧索硬化症患者的诱导多能干细胞衍生神经元中,POM121特异性地从NPC的核环转移到内环。因此,pan-ExM是一种强大的工具,可在单个NPC分辨率下可视化生理和病理背景下的NPC可塑性。

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