Regulated spatial organization and sensitivity of cytosolic protein oxidation in Caenorhabditis elegans

Cells adjust their behaviour in response to redox events by regulating protein activity through the reversible formation of disulfide bridges between cysteine thiols. However, the spatial and temporal control of these modifications remains poorly understood in multicellular organisms. Here we measured the protein thiol-disulfide balance in live Caenorhabditis elegans using a genetically encoded redox sensor and found that it is specific to tissues and is patterned spatially within a tissue. Insulin signalling regulates the sensor's oxidation at both of these levels. Unexpectedly, we found that isogenic individuals exhibit large differences in the sensor's thiol-disulfide balance. This variation contrasts with the general view that glutathione acts as the main cellular redox buffer. Indeed, our work suggests that glutathione converts small changes in its oxidation level into large changes in its redox potential. We therefore propose that glutathione facilitates the sensitive control of the thiol-disulfide balance of target proteins in response to cellular redox events.

Medienart:

E-Artikel

Erscheinungsjahr:

2014

Erschienen:

2014

Enthalten in:

Zur Gesamtaufnahme - volume:5

Enthalten in:

Nature communications - 5(2014) vom: 29. Sept., Seite 5020

Sprache:

Englisch

Beteiligte Personen:

Romero-Aristizabal, Catalina [VerfasserIn]
Marks, Debora S [VerfasserIn]
Fontana, Walter [VerfasserIn]
Apfeld, Javier [VerfasserIn]

Links:

Volltext

Themen:

Cysteine
Disulfides
GAN16C9B8O
Glutathione
Insulin
Journal Article
K848JZ4886
Oxygen
Research Support, N.I.H., Extramural
Research Support, Non-U.S. Gov't
S88TT14065
Sulfhydryl Compounds

Anmerkungen:

Date Completed 15.12.2015

Date Revised 21.10.2021

published: Electronic

Citation Status MEDLINE

doi:

10.1038/ncomms6020

funding:

Förderinstitution / Projekttitel:

PPN (Katalog-ID):

NLM242286208