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Peptidyl-prolyl cis/trans-Isomerase A1 (Pin1) Is a Target for Modification by Lipid Electrophiles

[Image: see text] Oxidation of membrane phospholipids is associated with inflammation, neurodegenerative disease, and cancer. Oxyradical damage to phospholipids results in the production of reactive aldehydes that adduct proteins and modulate their function. 4-Hydroxynonenal (HNE), a common product...

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Autores principales: Aluise, Christopher D., Rose, Kristie, Boiani, Mariana, Reyzer, Michelle L., Manna, Joseph D., Tallman, Keri, Porter, Ned A., Marnett, Lawrence J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2012
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3579456/
https://www.ncbi.nlm.nih.gov/pubmed/23231502
http://dx.doi.org/10.1021/tx300449g
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author Aluise, Christopher D.
Rose, Kristie
Boiani, Mariana
Reyzer, Michelle L.
Manna, Joseph D.
Tallman, Keri
Porter, Ned A.
Marnett, Lawrence J.
author_facet Aluise, Christopher D.
Rose, Kristie
Boiani, Mariana
Reyzer, Michelle L.
Manna, Joseph D.
Tallman, Keri
Porter, Ned A.
Marnett, Lawrence J.
author_sort Aluise, Christopher D.
collection PubMed
description [Image: see text] Oxidation of membrane phospholipids is associated with inflammation, neurodegenerative disease, and cancer. Oxyradical damage to phospholipids results in the production of reactive aldehydes that adduct proteins and modulate their function. 4-Hydroxynonenal (HNE), a common product of oxidative damage to lipids, adducts proteins at exposed Cys, His, or Lys residues. Here, we demonstrate that peptidyl-prolyl cis/trans-isomerase A1 (Pin1), an enzyme that catalyzes the conversion of the peptide bond of pSer/pThr-Pro moieties in signaling proteins from cis to trans, is highly susceptible to HNE modification. Incubation of purified Pin1 with HNE followed by MALDI-TOF/TOF mass spectrometry resulted in detection of Michael adducts at the active site residues His-157 and Cys-113. Time and concentration dependencies indicate that Cys-113 is the primary site of HNE modification. Pin1 was adducted in MDA-MB-231 breast cancer cells treated with 8-alkynyl-HNE as judged by click chemistry conjugation with biotin followed by streptavidin-based pulldown and Western blotting with anti-Pin1 antibody. Furthermore, orbitrap MS data support the adduction of Cys-113 in the Pin1 active site upon HNE treatment of MDA-MB-231 cells. siRNA knockdown of Pin1 in MDA-MB-231 cells partially protected the cells from HNE-induced toxicity. Recent studies indicate that Pin1 is an important molecular target for the chemopreventive effects of green tea polyphenols. The present study establishes that it is also a target for electrophilic modification by products of lipid peroxidation.
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spelling pubmed-35794562013-02-25 Peptidyl-prolyl cis/trans-Isomerase A1 (Pin1) Is a Target for Modification by Lipid Electrophiles Aluise, Christopher D. Rose, Kristie Boiani, Mariana Reyzer, Michelle L. Manna, Joseph D. Tallman, Keri Porter, Ned A. Marnett, Lawrence J. Chem Res Toxicol [Image: see text] Oxidation of membrane phospholipids is associated with inflammation, neurodegenerative disease, and cancer. Oxyradical damage to phospholipids results in the production of reactive aldehydes that adduct proteins and modulate their function. 4-Hydroxynonenal (HNE), a common product of oxidative damage to lipids, adducts proteins at exposed Cys, His, or Lys residues. Here, we demonstrate that peptidyl-prolyl cis/trans-isomerase A1 (Pin1), an enzyme that catalyzes the conversion of the peptide bond of pSer/pThr-Pro moieties in signaling proteins from cis to trans, is highly susceptible to HNE modification. Incubation of purified Pin1 with HNE followed by MALDI-TOF/TOF mass spectrometry resulted in detection of Michael adducts at the active site residues His-157 and Cys-113. Time and concentration dependencies indicate that Cys-113 is the primary site of HNE modification. Pin1 was adducted in MDA-MB-231 breast cancer cells treated with 8-alkynyl-HNE as judged by click chemistry conjugation with biotin followed by streptavidin-based pulldown and Western blotting with anti-Pin1 antibody. Furthermore, orbitrap MS data support the adduction of Cys-113 in the Pin1 active site upon HNE treatment of MDA-MB-231 cells. siRNA knockdown of Pin1 in MDA-MB-231 cells partially protected the cells from HNE-induced toxicity. Recent studies indicate that Pin1 is an important molecular target for the chemopreventive effects of green tea polyphenols. The present study establishes that it is also a target for electrophilic modification by products of lipid peroxidation. American Chemical Society 2012-12-11 2013-02-18 /pmc/articles/PMC3579456/ /pubmed/23231502 http://dx.doi.org/10.1021/tx300449g Text en Copyright © 2012 American Chemical Society
spellingShingle Aluise, Christopher D.
Rose, Kristie
Boiani, Mariana
Reyzer, Michelle L.
Manna, Joseph D.
Tallman, Keri
Porter, Ned A.
Marnett, Lawrence J.
Peptidyl-prolyl cis/trans-Isomerase A1 (Pin1) Is a Target for Modification by Lipid Electrophiles
title Peptidyl-prolyl cis/trans-Isomerase A1 (Pin1) Is a Target for Modification by Lipid Electrophiles
title_full Peptidyl-prolyl cis/trans-Isomerase A1 (Pin1) Is a Target for Modification by Lipid Electrophiles
title_fullStr Peptidyl-prolyl cis/trans-Isomerase A1 (Pin1) Is a Target for Modification by Lipid Electrophiles
title_full_unstemmed Peptidyl-prolyl cis/trans-Isomerase A1 (Pin1) Is a Target for Modification by Lipid Electrophiles
title_short Peptidyl-prolyl cis/trans-Isomerase A1 (Pin1) Is a Target for Modification by Lipid Electrophiles
title_sort peptidyl-prolyl cis/trans-isomerase a1 (pin1) is a target for modification by lipid electrophiles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3579456/
https://www.ncbi.nlm.nih.gov/pubmed/23231502
http://dx.doi.org/10.1021/tx300449g
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