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A H2AX–CARP-1 Interaction Regulates Apoptosis Signaling Following DNA Damage

Cell Cycle and Apoptosis Regulatory Protein (CARP-1/CCAR1) is a peri-nuclear phosphoprotein that regulates apoptosis via chemotherapeutic Adriamycin (doxorubicin) and a novel class of CARP-1 functional mimetic (CFM) compounds. Although Adriamycin causes DNA damage, data from Comet assays revealed th...

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Autores principales: Sekhar, Sreeja C., Venkatesh, Jaganathan, Cheriyan, Vino T., Muthu, Magesh, Levi, Edi, Assad, Hadeel, Meister, Paul, Undyala, Vishnu V., Gauld, James W., Rishi, Arun K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6406907/
https://www.ncbi.nlm.nih.gov/pubmed/30769864
http://dx.doi.org/10.3390/cancers11020221
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author Sekhar, Sreeja C.
Venkatesh, Jaganathan
Cheriyan, Vino T.
Muthu, Magesh
Levi, Edi
Assad, Hadeel
Meister, Paul
Undyala, Vishnu V.
Gauld, James W.
Rishi, Arun K.
author_facet Sekhar, Sreeja C.
Venkatesh, Jaganathan
Cheriyan, Vino T.
Muthu, Magesh
Levi, Edi
Assad, Hadeel
Meister, Paul
Undyala, Vishnu V.
Gauld, James W.
Rishi, Arun K.
author_sort Sekhar, Sreeja C.
collection PubMed
description Cell Cycle and Apoptosis Regulatory Protein (CARP-1/CCAR1) is a peri-nuclear phosphoprotein that regulates apoptosis via chemotherapeutic Adriamycin (doxorubicin) and a novel class of CARP-1 functional mimetic (CFM) compounds. Although Adriamycin causes DNA damage, data from Comet assays revealed that CFM-4.16 also induced DNA damage. Phosphorylation of histone 2AX (γH2AX) protein is involved in regulating DNA damage repair and apoptosis signaling. Adriamycin or CFM-4.16 treatments inhibited cell growth and caused elevated CARP-1 and γH2AX in human breast (HBC) and cervical cancer (HeLa) cells. In fact, a robust nuclear or peri-nuclear co-localization of CARP-1 and γH2AX occurred in cells undergoing apoptosis. Knock-down of CARP-1 diminished γH2AX, their co-localization, and apoptosis in CFM-4.16- or Adriamycin-treated cells. We found that CARP-1 directly binds with H2AX, and H2AX interacted with CARP-1, but not CARP-1 (Δ600–652) mutant. Moreover, cells expressing CARP-1 (Δ600–652) mutant were resistant to apoptosis, and had diminished levels of γH2AX, when compared with cells expressing wild-type CARP-1. Mutagenesis studies revealed that H2AX residues 1–35 harbored a CARP-1-binding epitope, while CARP-1 amino acids 636–650 contained an H2AX-interacting epitope. Surface plasmon resonance studies revealed that CARP-1 (636–650) peptide bound with H2AX (1–35) peptide with a dissociation constant (K(d)) of 127 nM. Cells expressing enhanced GFP (EGFP)-tagged H2AX (1–35) peptide or EGFP-tagged CARP-1 (636–650) peptide were resistant to inhibition by Adriamycin or CFM-4.16. Treatment of cells with transactivator of transcription (TAT)-tagged CARP-1 (636–650) peptide resulted in a moderate, statistically significant abrogation of Adriamycin-induced growth inhibition of cancer cells. Our studies provide evidence for requirement of CARP-1 interaction with H2AX in apoptosis signaling by Adriamycin and CFM compounds.
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spelling pubmed-64069072019-03-21 A H2AX–CARP-1 Interaction Regulates Apoptosis Signaling Following DNA Damage Sekhar, Sreeja C. Venkatesh, Jaganathan Cheriyan, Vino T. Muthu, Magesh Levi, Edi Assad, Hadeel Meister, Paul Undyala, Vishnu V. Gauld, James W. Rishi, Arun K. Cancers (Basel) Article Cell Cycle and Apoptosis Regulatory Protein (CARP-1/CCAR1) is a peri-nuclear phosphoprotein that regulates apoptosis via chemotherapeutic Adriamycin (doxorubicin) and a novel class of CARP-1 functional mimetic (CFM) compounds. Although Adriamycin causes DNA damage, data from Comet assays revealed that CFM-4.16 also induced DNA damage. Phosphorylation of histone 2AX (γH2AX) protein is involved in regulating DNA damage repair and apoptosis signaling. Adriamycin or CFM-4.16 treatments inhibited cell growth and caused elevated CARP-1 and γH2AX in human breast (HBC) and cervical cancer (HeLa) cells. In fact, a robust nuclear or peri-nuclear co-localization of CARP-1 and γH2AX occurred in cells undergoing apoptosis. Knock-down of CARP-1 diminished γH2AX, their co-localization, and apoptosis in CFM-4.16- or Adriamycin-treated cells. We found that CARP-1 directly binds with H2AX, and H2AX interacted with CARP-1, but not CARP-1 (Δ600–652) mutant. Moreover, cells expressing CARP-1 (Δ600–652) mutant were resistant to apoptosis, and had diminished levels of γH2AX, when compared with cells expressing wild-type CARP-1. Mutagenesis studies revealed that H2AX residues 1–35 harbored a CARP-1-binding epitope, while CARP-1 amino acids 636–650 contained an H2AX-interacting epitope. Surface plasmon resonance studies revealed that CARP-1 (636–650) peptide bound with H2AX (1–35) peptide with a dissociation constant (K(d)) of 127 nM. Cells expressing enhanced GFP (EGFP)-tagged H2AX (1–35) peptide or EGFP-tagged CARP-1 (636–650) peptide were resistant to inhibition by Adriamycin or CFM-4.16. Treatment of cells with transactivator of transcription (TAT)-tagged CARP-1 (636–650) peptide resulted in a moderate, statistically significant abrogation of Adriamycin-induced growth inhibition of cancer cells. Our studies provide evidence for requirement of CARP-1 interaction with H2AX in apoptosis signaling by Adriamycin and CFM compounds. MDPI 2019-02-14 /pmc/articles/PMC6406907/ /pubmed/30769864 http://dx.doi.org/10.3390/cancers11020221 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sekhar, Sreeja C.
Venkatesh, Jaganathan
Cheriyan, Vino T.
Muthu, Magesh
Levi, Edi
Assad, Hadeel
Meister, Paul
Undyala, Vishnu V.
Gauld, James W.
Rishi, Arun K.
A H2AX–CARP-1 Interaction Regulates Apoptosis Signaling Following DNA Damage
title A H2AX–CARP-1 Interaction Regulates Apoptosis Signaling Following DNA Damage
title_full A H2AX–CARP-1 Interaction Regulates Apoptosis Signaling Following DNA Damage
title_fullStr A H2AX–CARP-1 Interaction Regulates Apoptosis Signaling Following DNA Damage
title_full_unstemmed A H2AX–CARP-1 Interaction Regulates Apoptosis Signaling Following DNA Damage
title_short A H2AX–CARP-1 Interaction Regulates Apoptosis Signaling Following DNA Damage
title_sort h2ax–carp-1 interaction regulates apoptosis signaling following dna damage
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6406907/
https://www.ncbi.nlm.nih.gov/pubmed/30769864
http://dx.doi.org/10.3390/cancers11020221
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