Homocysteine modulates the proteolytic potential of human arterial smooth muscle cells through a reactive oxygen species dependant mechanism

scientific article published on 29 September 2009

Homocysteine modulates the proteolytic potential of human arterial smooth muscle cells through a reactive oxygen species dependant mechanism is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1007/S11010-009-0270-7
P698PubMed publication ID19787299

P50authorFrançoise Dignat-GeorgeQ61874319
P2093author name stringAlexandrine Foucault-Bertaud
Francoise Dignat-George
Philippe Charpiot
Edouard Lamy
Cecile Genovesio
Xue Dan Ke
P2860cites workCleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Q25938983
Hyperhomocysteinemia enhances vascular inflammation and accelerates atherosclerosis in a murine modelQ28360470
Molecular regulation of vascular smooth muscle cell differentiation in development and diseaseQ29615194
Homocyst(e)ine and cardiovascular disease: a critical review of the epidemiologic evidenceQ33727775
Human 72-kilodalton type IV collagenase forms a complex with a tissue inhibitor of metalloproteases designated TIMP-2Q34314710
Pump-1 cDNA codes for a protein with characteristics similar to those of classical collagenase family membersQ34453431
In vivo bradykinin B2 receptor activation reduces renal fibrosisQ34795075
Role of hyperhomocysteinemia in endothelial dysfunction and atherothrombotic disease.Q35831223
Mitochondrial redox control of matrix metalloproteinasesQ35860310
Medial elastic structure alterations in atherosclerotic arteries in minipigs: plaque proximity and arterial site specificityQ36854387
Vascular oxidant stress and inflammation in hyperhomocysteinemiaQ36932695
Isolation and culture of the three vascular cell types from a small vein biopsy sampleQ40560532
Activation mechanisms of matrix metalloproteinases.Q41482018
Nox4 is required for maintenance of the differentiated vascular smooth muscle cell phenotypeQ42099958
Redox regulation of vascular smooth muscle cell differentiationQ42506842
Differential effects of homocysteine on porcine endothelial and vascular smooth muscle cellsQ43969998
Hyperhomocysteinemia accelerates atherosclerosis in cystathionine beta-synthase and apolipoprotein E double knock-out mice with and without dietary perturbationQ44265472
Homocysteine modulates the proteolytic potential of human vascular endothelial cellsQ44788173
Angiotensin II induces MMP-2 in a p47phox-dependent mannerQ45238311
Plasma homocysteine and its association with carotid intimal-medial wall thickness and prevalent coronary heart disease: NHLBI Family Heart Study.Q51554637
Human 92- and 72-kilodalton type IV collagenases are elastasesQ67915576
The effects of ultraviolet A and reactive oxygen species on the mRNA expression of 72-kDa type IV collagenase and its tissue inhibitor in cultured human dermal fibroblastsQ71377787
Evidence for altered balance between matrix metalloproteinases and their inhibitors in human aortic diseasesQ71971790
28 Gelatinases A and BQ72059237
Development-related changes in matrix metalloproteinase expression in human aortic smooth muscle cellsQ72168470
Hyperhomocysteinemia-induced vascular damage in the minipig. Captopril-hydrochlorothiazide combination prevents elastic alterationsQ72533017
Quantifying cellular oxidative stress by dichlorofluorescein assay using microplate readerQ73000450
Influence of homocysteine on matrix metalloproteinase-2: activation and activityQ73004122
Binding of 92 kDa and 72 kDa progelatinases to insoluble elastin modulates their proteolytic activationQ73370271
Analysis of the ex vivo specificity of human gelatinases A and B towards skin collagen and elastic fibers by computerized morphometryQ73863324
Hyperhomocysteinemia induces elastolysis in minipig arteries: structural consequences, arterial site specificity and effect of captopril-hydrochlorothiazideQ77922263
Chinese yellow wine inhibits production of homocysteine-induced extracellular matrix metalloproteinase-2 in cultured rat vascular smooth muscle cellsQ79995543
Interleukin-1beta increases expression and activity of matrix metalloproteinase-2 in cardiac microvascular endothelial cells: role of PKCalpha/beta1 and MAPKsQ80305103
Homocysteine rapidly increases matrix metalloproteinase-2 expression and activity in cultured human vascular smooth muscle cells. Role of phosphatidyl inositol 3-kinase and mitogen activated protein kinase pathwaysQ82256235
P433issue1-2
P921main subjectproteolysisQ33123
reactive oxygen speciesQ424361
P304page(s)203-210
P577publication date2009-09-29
P1433published inMolecular and Cellular BiochemistryQ1573176
P1476titleHomocysteine modulates the proteolytic potential of human arterial smooth muscle cells through a reactive oxygen species dependant mechanism
P478volume335

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cites work (P2860)
Q41170049Arterial stiffness is not associated with bone parameters in an elderly hyperhomocysteinemic population.
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Q35086202Homocysteine level and risk of abdominal aortic aneurysm: a meta-analysis
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