Journal of Physiology 2008-06-15

Nuclear pore disassembly from endoplasmic reticulum membranes promotes Ca2+ signalling competency.

Michael J Boulware, Jonathan S Marchant

Index: J. Physiol. 586(Pt 12) , 2873-88, (2008)

Full Text: HTML

Abstract

The functionality of the endoplasmic reticulum (ER) as a Ca(2+) storage organelle is supported by families of Ca(2+) pumps, buffers and channels that regulate Ca(2+) fluxes between the ER lumen and cytosol. Although many studies have identified heterogeneities in Ca(2+) fluxes throughout the ER, the question of how differential functionality of Ca(2+) channels is regulated within proximal regions of the same organelle is unresolved. Here, we studied the in vivo dynamics of an ER subdomain known as annulate lamellae (AL), a cytoplasmic nucleoporin-containing organelle widely used in vitro to study the mechanics of nuclear envelope breakdown. We show that nuclear pore complexes (NPCs) within AL suppress local Ca(2+) signalling activity, an inhibitory influence relieved by heterogeneous dissociation of nucleoporins to yield NPC-denuded ER domains competent at Ca(2+) signalling. Consequently, we propose a novel generalized role for AL - reversible attenuation of resident protein activity - such that regulated AL (dis)assembly via a kinase/phosphatase cycle allows cells to support rapid gain/loss-of-function transitions in cellular physiology.


Related Compounds

  • Z-Gly-Pro-Gly-Gl...

Related Articles:

Impaired embryonic haematopoiesis yet normal arterial development in the absence of the Notch ligand Jagged1.

2008-07-09

[EMBO J. 27(13) , 1886-95, (2008)]

Collagenolytic enzyme activity in human ovary: an ovulatory enzyme system.

1981-12-01

[Fertil. Steril. 36(6) , 746-50, (1981)]

Cellular stretch increases superoxide production in the thick ascending limb.

2008-02-01

[Hypertension 51(2) , 488-93, (2008)]

Rab4 facilitates cyclic adenosine monophosphate-stimulated bile acid uptake and Na+-taurocholate cotransporting polypeptide translocation.

2008-11-01

[Hepatology 48(5) , 1665-70, (2008)]

Liver is able to activate naïve CD8+ T cells with dysfunctional anti-viral activity in the murine system.

2009-01-01

[PLoS ONE 4(10) , e7619, (2009)]

More Articles...