Regulation of the Inositol 1,4,5-Trisphosphate Receptor Type I by O-GlcNAc Glycosylation
Clicks: 170
ID: 273859
2007
Article Quality & Performance Metrics
Overall Quality
Not rated
Combines reader engagement with the AI quality analysis. This
article has not been analysed, so there is no overall score —
reader engagement is measured and shown alongside.
Reader Engagement
Steady Performance
30.0
/100
170 views
31 readers
AI Quality Assessment
Not analyzed
Readership in this journal
SteadyRanked #5 of 7 articles by views in journal of neuroscience
Most read
Least read
Bar heights use a square-root scale.
Mint this article as an NFT
Not yet mintedCreate a permanent, verifiable on-chain record of this article on the Scimatic Network. The NFT is held in your Journament account, and you can withdraw it to your own wallet at any time.
5
SUSD
one-off · no wallet required
Abstract
The inositol 1,4,5-trisphosphate (InsP3) receptor type I (InsP3R-I) is the principle channel for intracellular calcium (Ca2+) release in many cell types, including central neurons. It is regulated by endogenous compounds like Ca2+ and ATP, by protein partners, and by posttranslational modification. We report that the InsP3R-I is modified by O -linked glycosylation of serine or threonine residues with β- N -acetylglucosamine (O-GlcNAc). The level of O -GlcNAcylation can be altered in vitro by the addition of the enzymes which add [OGT ( O -GlcNActransferase)] or remove ( O -GlcNAcase) this sugar or by loading cells with UDP-GlcNAc. We monitored the effects of this modification on InsP3R function at the single-channel level and on intracellular Ca2+ transients. Single-channel activity was monitored with InsP3R incorporated into bilayers; Ca2+ signaling was monitored using cells loaded with a Ca2+-sensitive fluorophore. We found that channel activity was decreased by the addition of O -GlcNAc and that this decrease was reversed by removal of the sugar. Similarly, cells loaded with UDP-GlcNAc had an attenuated response to uncaging of InsP3. These results show that O -GlcNAcylation is an important regulator of the InsP3R-I and suggest a mechanism for neuronal dysfunction under conditions in which O -GlcNAc is high, such as diabetes or physiological stress.
| Reference Key |
rengifo2007journalregulation
Use this key to autocite in the manuscript while using
SciMatic Manuscript Manager or Thesis Manager
|
|---|---|
| Authors | Juliana Rengifo;Craig J. Gibson;Eva Winkler;Thibault Collin;Barbara E. Ehrlich;Juliana Rengifo;Craig J. Gibson;Eva Winkler;Thibault Collin;Barbara E. Ehrlich; |
| Journal | journal of neuroscience |
| Year | 2007 |
| DOI |
10.1523/JNEUROSCI.2069-07.2007
|
| URL | |
| Keywords |
|
Citations
No citations found. To add a citation, contact the admin at info@scimatic.org
Comments
No comments yet. Be the first to comment on this article.