Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

310. CAVEOLIN 1 AND 2 IN THE UTERUS DURING EARLY PREGNANCY

View through CrossRef
Rat uterine epithelial cells undergo many changes during early pregnancy in order to become receptive to blastocyst implantation. These changes include basolateral folding and the presence of vesicles of various sizes which are at their greatest number during the pre-implantation period. The present study investigated the possible role that caveolin 1 and 2 plays in this remodelling specifically days 1, 3, 6, 7, and 9 of pregnancy. Caveolin is a major protein in omega shaped invaginations of the plasma membrane called caveolae that are considered to be specialised plasma membrane subdomains. Caveolae are rich in cholesterol, glycosphingolipids, and GPI anchored proteins and are involved in endocytosis and membrane curvature. Immunofluorescence microscopy has shown caveolin 1 and 2 on day 1 of pregnancy are localised to the cytoplasm of luminal uterine epithelial cells, and by day 6 of pregnancy (the time of implantation), it concentrates basally. By day 9 of pregnancy, expression of both caveolin 1 and 2 in luminal uterine epithelia is cytoplasmic as seen on day 1 of pregnancy. A corresponding increase in protein expression of caveolin 1 on day 6 of pregnancy in luminal uterine epithelia was observed. Interestingly however, caveolin 2 protein expression decreases at the time of implantation as found by western blot analysis. Both caveolin 1 and 2 were localised to blood vessels within the endometrium and myometrium and also the muscle of the myometrium in all days of pregnancy studied. In addition, both caveolin 1 and 2 were absent from glandular epithelium, which is interesting considering that they do not undergo the plasma membrane transformation. The localisation and expression of caveolin 1 and 2 in rat luminal uterine epithelium at the time of implantation suggest possible roles in trafficking of cholesterol and/or various proteins for either degradation or relocation. Caveolins may contribute to the morphology of the basolateral membrane seen on day 6 of pregnancy. All of which may play an important role during successful blastocyst implantation.
Title: 310. CAVEOLIN 1 AND 2 IN THE UTERUS DURING EARLY PREGNANCY
Description:
Rat uterine epithelial cells undergo many changes during early pregnancy in order to become receptive to blastocyst implantation.
These changes include basolateral folding and the presence of vesicles of various sizes which are at their greatest number during the pre-implantation period.
The present study investigated the possible role that caveolin 1 and 2 plays in this remodelling specifically days 1, 3, 6, 7, and 9 of pregnancy.
Caveolin is a major protein in omega shaped invaginations of the plasma membrane called caveolae that are considered to be specialised plasma membrane subdomains.
Caveolae are rich in cholesterol, glycosphingolipids, and GPI anchored proteins and are involved in endocytosis and membrane curvature.
Immunofluorescence microscopy has shown caveolin 1 and 2 on day 1 of pregnancy are localised to the cytoplasm of luminal uterine epithelial cells, and by day 6 of pregnancy (the time of implantation), it concentrates basally.
By day 9 of pregnancy, expression of both caveolin 1 and 2 in luminal uterine epithelia is cytoplasmic as seen on day 1 of pregnancy.
A corresponding increase in protein expression of caveolin 1 on day 6 of pregnancy in luminal uterine epithelia was observed.
Interestingly however, caveolin 2 protein expression decreases at the time of implantation as found by western blot analysis.
Both caveolin 1 and 2 were localised to blood vessels within the endometrium and myometrium and also the muscle of the myometrium in all days of pregnancy studied.
In addition, both caveolin 1 and 2 were absent from glandular epithelium, which is interesting considering that they do not undergo the plasma membrane transformation.
The localisation and expression of caveolin 1 and 2 in rat luminal uterine epithelium at the time of implantation suggest possible roles in trafficking of cholesterol and/or various proteins for either degradation or relocation.
Caveolins may contribute to the morphology of the basolateral membrane seen on day 6 of pregnancy.
All of which may play an important role during successful blastocyst implantation.

Related Results

Playing Pregnancy: The Ludification and Gamification of Expectant Motherhood in Smartphone Apps
Playing Pregnancy: The Ludification and Gamification of Expectant Motherhood in Smartphone Apps
IntroductionLike other forms of embodiment, pregnancy has increasingly become subject to representation and interpretation via digital technologies. Pregnancy and the unborn entity...
Chromosomal localization, genomic organization, and developmental expression of the murine caveolin gene family (Cav‐1, ‐2, and ‐3)
Chromosomal localization, genomic organization, and developmental expression of the murine caveolin gene family (Cav‐1, ‐2, and ‐3)
Caveolins (Cav‐1, ‐2, and ‐3) are a gene family of cytoplasmic membrane‐anchored scaffolding proteins that: (i) help to sculpt caveolae membranes from the plasma membrane proper; a...
Cysteine post-translational modifications regulate protein interactions of caveolin-3
Cysteine post-translational modifications regulate protein interactions of caveolin-3
Abstract Caveolae are small flask-shaped invaginations of the surface membrane which are proposed to recruit and co-localise signalling molecules. The distinctive c...
The TGF-β1/p53/PAI-1 Signaling Axis in Vascular Senescence: Role of Caveolin-1
The TGF-β1/p53/PAI-1 Signaling Axis in Vascular Senescence: Role of Caveolin-1
Stress-induced premature cellular senescence is a significant factor in the onset of age-dependent disease in the cardiovascular system. Plasminogen activator inhibitor-1 (PAI-1), ...
Evidence for Cyclooxygenase‐1 Association with Caveolin‐1 and ‐2 in Cultured Human Embryonic Kidney (HEK 293) Cells
Evidence for Cyclooxygenase‐1 Association with Caveolin‐1 and ‐2 in Cultured Human Embryonic Kidney (HEK 293) Cells
AbstractThe purpose of this study was to confirm protein‐protein interaction between cyclooxygenase‐1 (COX‐1) and caveolins. The interaction of cyclooxygenase‐1 and caveolins in th...
Hepatic Overexpression of Caveolins Increases Bile Salt Secretion in Mice
Hepatic Overexpression of Caveolins Increases Bile Salt Secretion in Mice
Caveolins are cholesterol–binding proteins involved in the regulation of several intracellular processes, including cholesterol transport. Because hepatocytes express caveolin–1 an...

Back to Top