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The luminal AAA+ ATPase torsinA mediates distinct mechanisms of nuclear-cytoplasmic communication by adopting different functional assembly states

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LAP1 and LULL1 luminal domains are predicted to adopt an AAA+-like

AAA+ ATPases: structural insertions under the magnifying glass - ScienceDirect

Aberrant Cellular Behavior of Mutant TorsinA Implicates Nuclear Envelope Dysfunction in DYT1 Dystonia

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Figure 2 from The LINC and NPC relationship – it's complicated!

Figure 2 from The LINC and NPC relationship – it's complicated!

Transport and Communication Across the Nuclear Envelope

Dynamic functional assembly of the Torsin AAA+ ATPase and its modulation by LAP1

The mechanism of Torsin ATPase activation

Transport and Communication Across the Nuclear Envelope

PDF] Torsin ATPase deficiency leads to defects in nuclear pore biogenesis and sequestration of MLF2

Torsin ATPases influence chromatin interaction of the Torsin regulator LAP1

Torsin ATPases influence chromatin interaction of the Torsin regulator LAP1