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Query: UNIPROT:P36969 (
phospholipid hydroperoxide glutathione peroxidase
)
344
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The selenoprotein
phospholipid hydroperoxide glutathione peroxidase
(
PHGPx
) accounts for almost the entire
selenium
content of mammalian testis.
PHGPx
is abundantly expressed in spermatids as active peroxidase but is transformed to an oxidatively inactivated protein in mature sperm, where it is a major constituent of the mitochondrial capsule in the midpiece. Male infertility in
selenium
-deficient animals, which is characterized by impaired sperm motility and morphological midpiece alterations, is considered to result from insufficient
PHGPx
content. We studied the relationship between sperm
PHGPx
, measured as rescued activity, and human fertility. Sperm specimens from 75 infertile men and 37 controls were analyzed for fertility-related parameters according to World Health Organization criteria. The
PHGPx
protein content was estimated after reductive solubilization of the spermatozoa by measuring the rescued
PHGPx
activity. Rescued
PHGPx
activity of infertile men ranged significantly below that of controls (93.2 +/- 60.1 units/mg sperm protein vs. 187.5 +/- 55.3 units/mg) and was particularly low in oligoasthenozoospermic specimens (61.93 +/- 45.42 units/mg; P < 0.001 compared with controls and asthenozoospermic samples). Rescued
PHGPx
activity was correlated positively with viability, morphological integrity, and most profoundly forward motility (r = 0.35, 0.44, and 0.45, respectively). In isolated motile samples, motility decreased faster with decreasing
PHGPx
content. In humans,
PHGPx
appears to be indispensable for structural integrity of spermatozoa and to codetermine sperm motility and viability. Because the content of
PHGPx
, irrespective of the cause of alteration, is correlated with fertility-related parameters,
PHGPx
can be considered a predictive measure for fertilization capacity.
...
PMID:Male fertility is linked to the selenoprotein phospholipid hydroperoxide glutathione peroxidase. 1219 9
Selenium
(Se) can protect endothelial cells (EC) from oxidative damage by altering the expression of selenoproteins with antioxidant function such as cytoplasmic glutathione peroxidase (cyGPX),
phospholipid hydroperoxide glutathione peroxidase
(
PHGPX
) and thioredoxin reductase (TR). If the role of Se on EC function is to be studied, it is essential that a model system be chosen which reflects selenoprotein expression in human EC derived from vessels prone to developing atheroma. We have used [75Se]-selenite labelling and selenoenzyme measurements to compare the selenoproteins expressed by cultures of EC isolated from different human vasculature with EC bovine and porcine aorta. Only small differences were observed in selenoprotein expression and activity in EC originating from human coronary artery, human umbilical vein (HUVEC), human umbilical artery and the human EC line EAhy926. The selenoprotein profile in HUVEC was consistent over eight passages and HUVEC isolated from four cords also showed little variability. In contrast, EC isolated from pig and bovine aorta showed marked differences in selenoprotein expression when compared to human cells. This study firmly establishes the suitability and consistency of using HUVEC (and possibly the human cell line EAhy926) as a model to study the effects of Se on EC function in relation to atheroma development in the coronary artery. Bovine or porcine EC appear to be an inappropriate model.
...
PMID:Selenoprotein expression in endothelial cells from different human vasculature and species. 1237 18
The human endothelial cell line EAhy926 was used to determine the importance of
selenium
in preventing oxidative damage induced by tert-butyl hydroperoxide (tert-BuOOH) or oxidised low density lipoprotein (LDLox). In cells grown in a low
selenium
medium, tert-BuOOH and LDLox killed cells in a dose-dependent manner. At 555 mg/l LDLox or 300 microM tert-BuOOH, >80% of cells were killed after 20 h. No significant cell kill was achieved by these agents if cells were pre-incubated for 48 h with 40 nM sodium selenite, a concentration that maximally induced the activities of cytoplasmic glutathione peroxidase (cyGPX; 5.1-fold),
phospholipid hydroperoxide glutathione peroxidase
(PHGPX;1.9-fold) and thioredoxin reductase (TR; 3.1-fold).
Selenium
-deficient cells pre-treated with 1 microM gold thioglucose (GTG) (a concentration that inhibited 25% of TR activity but had no inhibitory effect on cyGPX or PHGPX activity) were significantly (P<0.05) more susceptible to tert-BuOOH toxicity (LC(50) 110 microM) than
selenium
-deficient cells (LC(50) 175 microM). This was also the case for LDLox. In contrast, cells pre-treated with 40 nM selenite prior to exposure to GTG were significantly more resistant to damage from tert-BuOOH and LDLox than Se-deficient cells. Treatment with GTG or selenite had no significant effect on intracellular total glutathione concentrations. These results suggest that
selenium
supplementation, acting through induction of TR and GPX, has the potential to protect the human endothelium from oxidative damage.
...
PMID:Selenium supplementation acting through the induction of thioredoxin reductase and glutathione peroxidase protects the human endothelial cell line EAhy926 from damage by lipid hydroperoxides. 1243 87
Selenoprotein mRNAs are particular in several aspects. They contain a specific secondary structure in their 3'UTR, called Secis (selenocysteine inserting sequence), which is indispensable for selenocysteine incorporation, and they are degraded under
selenium
-limiting conditions according to their ranking in the hierarchy of selenoproteins. In the familiy of
selenium
-dependent glutathione peroxidases (GPx) the ranking is GI-GPx > or =
PHGPx
> cGPx = pGPx. This phenomenon was studied by mutually combining the coding regions of GI-GPx,
PHGPx
and cGPx with their 3'UTRs. HepG2 cells were stably transfected with the resulting constructs. Expression of glutathione peroxidases was estimated by activity measurement and Western blotting, the
selenium
-dependent mRNA stability by real-time PCR. Whereas 3'UTRs from stable
PHGPx
and GI-GPx could be exchanged without loss of stability, they were not able to stabilize cGPx mRNA. cGPx 3'UTR rendered GI-GPx and
PHGPx
mRNA unstable. Thus, cGPx mRNA contains
selenium
-responsive instability elements in both the translated and the untranslated region, which cannot be compensated by one of the stable homologs. Stabilizing efficiency of an individual GPx 3'UTR did not correlate with the efficiency of selenocysteine incorporation.
PHGPx
3'UTR was equally effective as cGPx 3'UTR in enhancing GPx activity in all constructs, while GI-GPx 3'UTR showed a markedly lower efficacy. We conclude that different mRNA sequences and/or RNA-binding proteins might regulate mRNA stability and translation of selenoprotein mRNA.
...
PMID:3'UTRs of glutathione peroxidases differentially affect selenium-dependent mRNA stability and selenocysteine incorporation efficiency. 1267 95
Male Wistar rats fed with diets containing eight different levels of
selenium
(Se). Six rats in each group were killed after 20 weeks to obtain brains. The other 105 rats in the Se depleted group were then divided into four groups randomly and fed with diets containing four different levels of Se. The rats in these four groups were then killed at different time points to observe the kinetic change of selenoproteins. The lowest dietary Se required for reaching the plateau of the activities of cellular glutathione peroxidase (cGPX),
phospholipid hydroperoxide glutathione peroxidase
(
PHGPX
) and type II deiodinase (ID II) were 0.05, 0.03 and 0.01 mg/kg respectively. The lowest dietary Se required for reaching normal expression of selenoprotein P and selenoprotein W were 0.01 and 0.05 mg/kg respectively. While the rats were restored Se from diets supplemented with Se, the expression of selenoprotein P and type II deiodinase were in preference to
PHGPX
and cGPX, and the later two parameters were in preference to selenoprotein W. The results suggested that the function of selenoprotein P and ID II in brain were more important than the other three selenoproteins.
...
PMID:[Selenoproteins in rat brain]. 1271 17
Male weanling Wistar rats were fed with either a basal
selenium
deficient diet (a Torula yeast based semisynthetic diet, containing Se 0.01 mg/kg) or a
selenium
sufficient diet supplemented with Se as Na2SeO3 (containing Se 0.5 mg/kg). Rats were killed after different weeks(0,1,2,4,8,12,15,17,19,20 and 24 respectively). Their organs were taken to observe the kinetic change of
selenium
concentration, the activities of intracellular glutathione peroxidase (cGPX), extracellular glutathione peroxidase (eGPX), and
phospholipid hydroperoxide glutathione peroxidase
(
PHGPX
) in different organs. The results showed that
selenium
levels and the activities of selenoenzyme in testis and pituitary were more resistant to
selenium
deficiency than other organs. During
selenium
deficiency, the utilization of
selenium
by
PHGPX
and deiodinase was prior to eGPX and cGPX, which suggested that the function of
PHGPX
and deiodinase were more important than that of eGPX and cGPX.
...
PMID:[Priority of selenium incorporation into selenoproteins during selenium depletion in rats]. 1271 21
Phospholipid hydroperoxide glutathione peroxidase (
PHGPx
; EC 1.11.1.12), a broad-spectrum thiol-dependent peroxidase, deserves renewed interest as a regulatory factor in various signaling cascades and as a structural protein in sperm cells. We present a first attempt to identify catalytic intermediates and derivatives of the selenoprotein by liquid chromatography coupled to electrospray tandem mass spectrometry (LC/ESI-MS/MS) and to explain observed specificities by molecular modeling. The ground state enzyme E proved to correspond to position 3-170 of the deduced porcine sequence with
selenium
being present as selenocysteine at position 46. The selenenic acid form, which is considered to be the first catalytic intermediate F formed by reaction with hydroperoxide, could not be identified. The second catalytic intermediate G was detected as Se-glutathionylated enzyme. This intermediate is generated in the reverse reaction where the active site selenol interacts with glutathione disulfide (GSSG). According to molecular models, specific binding of reduced glutathione (GSH) and of GSSG is inter alia facilitated by electrostatic attraction of Lys-48 and Lys-125. Polymerization of
PHGPx
is obtained under oxidizing conditions in the absence of low molecular weight thiols. Analysis of MS spectra revealed that the process is due to a selective reaction of Sec-46 with Cys-148' resulting in linear polymers representing dead-end intermediates (G'). FT Docking of
PHGPx
molecules allowed reactions of Sec-46 with either Cys-66', Cys-107', Cys-168' or Cys-148', the latter option being most likely as judged by the number of proposed intermediates with reasonable hydrogen bonds, interaction energies and interface areas. We conclude that the same catalytic principles, depending on the conditions, can drive the diverse actions of
PHGPx
, i.e. hydroperoxide reduction, GSSG reduction, S-derivatization and self-incorporation into biological structures.
...
PMID:Versatility of selenium catalysis in PHGPx unraveled by LC/ESI-MS/MS. 1275 87
Phospholipid-hydroperoxide glutathione peroxidase
(GPX4 or PHGPX) is a unique
selenium
dependent glutathione peroxidase that reduces phospholipid, cholesterol, and cholesteryl ester hydroperoxides.
Phospholipid-hydroperoxide glutathione peroxidase
has been shown to exist as both a 197 amino acid mitochondrial targeting protein and as a 170 amino acid non-mitochondrial protein. The cDNA encoding the non-mitochondrial chicken GPX4 (cGPX4) has been isolated from an immortalized DF-1 chicken embryonic fibroblast (CEF) cell line cDNA library. The nucleotide sequence of cGPX4 was 802 bp in length with an open reading frame (ORF) that encoded 170 amino acids but lacked the N-terminal domain that encoded the mitochondrial leader sequence (MLS). Chicken non-mitochondrial GPX4 was highly expressed in brain and stromal tissues. Surprisingly, it was found that ovarian stromal tissue cGPX4 expression is regulated quite differently according to the reproductive status of the bird, suggesting that GPX4 may play an important role in reproduction in response to steroid hormones, in addition to its general antioxidant functions.
...
PMID:Cloning and expression analysis of chicken phospholipid-hydroperoxide glutathione peroxidase. 1288 77
We previous reported that a nano red elemental
selenium
(Nano-Se) in the range from 20 approximately 60 nm had similar bioavailability to sodium selenite (BioFactors 15 (2001) 27). We recently found that Nano-Se with different size had marked difference in scavenging an array of free radicals in vitro, the smaller the particle, the better scavenging activity (Free Radic. Biol. Med. 35 (2003) 805). In order to examine whether there is a size effect of Nano-Se in the induction of Se-dependent enzymes, a range of Nano-Se (5 approximately 200 nm) have been prepared based on the control of elemental Se atom aggregation. The sizes of Nano-Se particles were inversely correlated with protein levels in the redox system of selenite and glutathione. Different sizes of red elemental Se were prepared by adding varying amount of bovine serum albumin (BSA). Three different sizes of Nano-Se (5 approximately 15 nm, 20 approximately 60 nm, and 80 approximately 200 nm) have been chosen for the comparison of biological activity in terms of the induction of seleno-enzyme activities. Results showed that there was no significant size effect of Nano-Se from 5 to 200 nm in the induction of glutathione peroxidase (GPx),
phospholipid hydroperoxide glutathione peroxidase
(
PHGPx
) and thioredoxin reductase-1 (TrxR-1) in human hepatoma HepG2 cells and the livers of mice.
...
PMID:Nano red elemental selenium has no size effect in the induction of seleno-enzymes in both cultured cells and mice. 1512 May 75
Using a macro array filter with 711 cDNA inserts representing 620 unigenes selected from a barley EST collection, we identified transcripts differentially expressed in salt (NaCl)-treated tolerant (cv. Prasad) and sensitive (cv. Lepakshi) seedlings of foxtail millet (Setaria italica L.). Transcripts of hydrogen peroxide scavenging enzymes such as
phospholipid hydroperoxide glutathione peroxidase
(
PHGPX
), ascorbate peroxidase (APX) and catalase 1 (CAT1) in addition to some genes of cellular metabolism were found to be especially up-regulated at high salinity in the tolerant line. To analyse this process at the protein level we examined protein expression patterns under various stress conditions. A 25 kD protein with a pI of 4.8 was found to be induced prominently under high salt concentrations (250 mmol/L). This salt-induced 25 kD protein has been purified and identified by peptide sequencing as
PHGPX
protein. The increase of the
PHGPX
protein level under salt stress in the tolerant line parallels the
PHGPX
mRNA results of array analysis but was more pronounced. We cloned and characterized the foxtail millet
PHGPX
cDNA, which shows 85% and 95% homology at the DNA and protein level, respectively, to one stress-induced member of the small barley
PHGPX
gene family encoding non-
selenium
glutathione peroxidases. As shown by Southern blot analysis, a small family of
PHGPX
genes exists in foxtail millet, too. The specific expression pattern of the
PHGPX
gene in salt-induced tolerant millet seedlings suggests that its product plays an important role in the defense reaction against salt-induced oxidative damage and that the characterized glutathione peroxidase is one of the components conferring resistance against salt to the tolerant foxtail millet cultivar.
...
PMID:Transcriptome changes in foxtail millet genotypes at high salinity: identification and characterization of a PHGPX gene specifically upregulated by NaCl in a salt-tolerant line. 1512 34
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