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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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Torsin ATPases influence chromatin interaction of the Torsin regulator LAP1

The AAA + ATPase TorsinA polymerizes into hollow helical tubes with 8.5 subunits per turn

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

The mechanism of Torsin ATPase activation

Full article: Torsins: not your typical AAA+ ATPases

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

Frontiers Torsin ATPases: Harnessing Dynamic Instability for Function

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

Transport and Communication Across the Nuclear Envelope

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

Nuclear Egress of Herpesviruses: The Prototypic Vesicular Nucleocytoplasmic Transport - ScienceDirect

Full article: Torsins: not your typical AAA+ ATPases

Torsin ATPases influence chromatin interaction of the Torsin regulator LAP1

The AAA + ATPase TorsinA polymerizes into hollow helical tubes with 8.5 subunits per turn

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