Trova

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

4.6 (738) · € 18.00 · In Magazzino

The luminal AAA+ ATPase torsinA mediates distinct mechanisms of  nuclear-cytoplasmic communication by adopting different functional assembly  states
Full article: Torsins: not your typical AAA+ ATPases

Full article: Torsins: not your typical AAA+ ATPases

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

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

PDF] Access of torsinA to the inner nuclear membrane is activity dependent  and regulated in the endoplasmic reticulum

PDF] Access of torsinA to the inner nuclear membrane is activity dependent and regulated in the endoplasmic reticulum

Torsin ATPases influence chromatin interaction of the Torsin regulator LAP1

Torsin ATPases influence chromatin interaction of the Torsin regulator LAP1

Full article: Torsins: not your typical AAA+ ATPases

Full article: Torsins: not your typical AAA+ ATPases

Dissecting Torsin/cofactor function at the nuclear envelope: a genetic  study

Dissecting Torsin/cofactor function at the nuclear envelope: a genetic study

Cells, Free Full-Text

Cells, Free Full-Text

Transport and Communication Across the Nuclear Envelope

Transport and Communication Across the Nuclear Envelope

Hypothesized model for torsinA-mediated degradation of CFTR mutant

Hypothesized model for torsinA-mediated degradation of CFTR mutant

TA affects the dynamics of EGFP–mini-N2G in the nuclear envelope. (A)

TA affects the dynamics of EGFP–mini-N2G in the nuclear envelope. (A)