Cx46 hemichannel modulation by nitric oxide: Role of the fourth transmembrane helix cysteine and its possible involvement in cataract formation
Journal
Nitric Oxide
ISSN
1089-8603
Date Issued
2019
Author(s)
Nicolás J. Arévalo
Cristóbal G. Rojas
Rodolfo J. Arjona
Constanza A. Alcaíno
Wendy González
Jonathan G. Canan
Rodrigo Moraga-Amaro
Jimmy Stehberg
Luis Reuss
Guillermo A. Altenberg
Type
Resource Types::text::journal::journal article
URL Institutional Repository
Cite this document
Retamal, M. A., Orellana, V. P., Arévalo, N. J., Rojas, C. G., Arjona, R. J., Alcaíno, C. A., González, W., Canan, J. G., Moraga-Amaro, R., Stehberg, J., Reuss, L., & Altenberg, G. A. (2019). Cx46 hemichannel modulation by nitric oxide: Role of the fourth transmembrane helix cysteine and its possible involvement in cataract formation. Nitric Oxide, 86, 54-62. https://doi.org/10.1016/j.niox.2019.02.007
Subjects
nitric oxide
;
cataract
;
hemichannels
;
redox regulation
;
connexins
;
amino acid sequence
;
animals
;
cataract
;
cell line
;
connexins
;
cricetulus
;
cysteine
;
gap junctions
;
humans
;
male
;
membrane potentials
;
mesocricetus
;
mice
;
nitric oxide
;
nitrosation
;
protein conformation, alpha-helical
;
protein processing, post-translational
;
rats, sprague-dawley
;
sequence alignment
;
xenopus laevis
;
zebrafish
;
connexin 46
;
cysteine
;
nitric oxide
;
cx46 protein, rat
;
cysteine
;
gap junction protein
;
nitric oxide
;
animal experiment
;
animal model
;
animal tissue
;
article
;
cataract
;
cataractogenesis
;
controlled study
;
female
;
gap junction
;
human
;
human cell
;
lens epithelium cell
;
male
;
nitrosation
;
nonhuman
;
oocyte
;
priority journal
;
rat
;
xenopus
;
alpha helix
;
amino acid sequence
;
animal
;
cataract
;
cell line
;
chemistry
;
cricetulus
;
membrane potential
;
mesocricetus
;
metabolism
;
mouse
;
physiology
;
protein processing
;
sequence alignment
;
sprague dawley rat
;
xenopus laevis
;
zebra fish