Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
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Gene/Protein
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Target Concepts:
Gene/Protein
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Query: UNIPROT:P30044 (
antioxidant enzyme
)
8,037
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Oxidative stress and apoptosis are implicated in tendon degeneration.
Peroxiredoxin 5
(
PRDX5
) is a novel thioredoxin peroxidase recently identified in mammals, participating directly in eliminating hydrogen peroxide (H(2)O(2)) and neutralizing other reactive oxygen species (ROS). We have previously reported that
PRDX5
is upregulated in degenerative human tendon. However, the effects of this upregulation on human tendon cell function remain unknown, in particular, with regards to oxidative stress conditions. Here we report that exposure of human tendon cells to 50 microM H(2)O(2) for 24 h (in vitro oxidative stress) caused a significant increase in the percentage of apoptotic cells (P<0.05) as assessed by flow cytometric analysis of Annexin V binding, accompanied by increased PRXD5 mRNA and protein expression. Overexpression of
PRDX5
in human tendon cells via transfection inhibited H(2)O(2)-induced tendon cell apoptosis by 46% (P<0.05), and prevented the decrease in tendon cell collagen synthesis which occurs under H(2)O(2) challenge, although the decrease in collagen synthesis was small. Results from our study indicate that the
antioxidant enzyme
PRDX5
plays a protective role in human tendon cells against oxidative stress by reducing apoptosis and maintaining collagen synthesis.
...
PMID:Overexpression of antioxidant enzyme peroxiredoxin 5 protects human tendon cells against apoptosis and loss of cellular function during oxidative stress. 1527 23
Peroxiredoxin 5
(
PRDX5
) is a mammalian thioredoxin peroxidase ubiquitously expressed in tissues. Its role as
antioxidant enzyme
has been previously supported in different pathological situations. In this study, we determined the complete human
PRDX5
genomic organization and isolated the 5'-flanking region of the gene. Human
PRDX5
gene is composed of six exons and five introns similarly to other chordate
PRDX5
genes. Several single nucleotide polymorphisms were identified. Six out of them have amino acid substitutions in protein-coding region. Analysis of the 5'-flanking region of human
PRDX5
revealed the presence of a TATA-less promoter containing a canonical CpG island and several putative response elements for transcription factors. To analyze the regulatory mechanisms controlling human
PRDX5
expression, we characterized the 5'-flanking region by cloning various segments of this region in front of a luciferase reporter sequence. Transfection in HepG2 cells indicate that the 5'-flanking region contains regulatory elements for constitutive expression of human
PRDX5
. Multiple transcription start sites were also identified by 5'-RACE-PCR in human liver. Moreover, although no corresponding proteins were reported, we present new alternative splicing variants encoded specifically by human
PRDX5
gene. The characterization of human
PRDX5
gene revealed the complexity of its regulation and a high variability of sequences that might be associated with pathological situations.
...
PMID:Human peroxiredoxin 5 gene organization, initial characterization of its promoter and identification of alternative forms of mRNA. 1762 20
Peroxiredoxin 5
(
PRDX5
) was the last member to be identified among the six mammalian peroxiredoxins. It is also the unique atypical 2-Cys peroxiredoxin in mammals. Like the other five members,
PRDX5
is widely expressed in tissues but differs by its surprisingly large subcellular distribution. In human cells, it has been shown that
PRDX5
can be addressed to mitochondria, peroxisomes, the cytosol, and the nucleus.
PRDX5
is a peroxidase that can use cytosolic or mitochondrial thioredoxins to reduce alkyl hydroperoxides or peroxynitrite with high rate constants in the 10(6) to 10(7) M(-1)s(-1) range, whereas its reaction with hydrogen peroxide is more modest, in the 10(5) M(-1)s(-1) range.
PRDX5
crystal structures confirmed the proposed enzymatic mechanisms based on biochemical data but revealed also some specific unexpected structural features. So far,
PRDX5
has been viewed mainly as a cytoprotective
antioxidant enzyme
acting against endogenous or exogenous peroxide attacks rather than as a redox sensor. Accordingly, overexpression of the enzyme in different subcellular compartments protects cells against death caused by nitro-oxidative stresses, whereas gene silencing makes them more vulnerable. Thus, more than 10 years after its molecular cloning, mammalian
PRDX5
appears to be a unique peroxiredoxin exhibiting specific functional and structural features.
...
PMID:Peroxiredoxin 5: structure, mechanism, and function of the mammalian atypical 2-Cys peroxiredoxin. 2097 38