Literature DB >> 16502257

Overexpression of peptidylarginine deiminase IV features in apoptosis of haematopoietic cells.

G-Y Liu1, Y-F Liao, W-H Chang, C-C Liu, M-C Hsieh, P-C Hsu, G J Tsay, H-C Hung.   

Abstract

Peptidylarginine deiminases (PADIs) convert peptidylarginine into citrulline via posttranslational modification. One member of the family, PADI4, plays an important role in immune cell differentiation and cell death. To elucidate the participation of PADI4 in haematopoietic cell death, we examine whether inducible overexpression of PADI4 enhances the apoptotic cell death. PADI4 reduced the viability in a dose- and time-dependent manner of human leukemia HL-60 cells and human acute T leukemia Jurkat cells. The apoptosis-inducing activities were determined by nuclear condensation, DNA fragmentation, sub-G1 appearance, loss of mitochondrial membrane potential (delta psi(m)), release of mitochondrial cytochrome c into cytoplasm and proteolytic activation of caspase 9 and 3. Following PADI4 overexpression, cells arrest in G1 phase significantly before their entrance into apoptotic cell death. PADI4 increases tumor suppressor p53 and its downstream p21 to control cell cycle. In the detections of protein expression and kinase activity, all protein levels of cyclin-dependent kinases (CDKs) and cyclins are not reduced except cyclin D, however, CDK2 (G1 entry S phase) and CDK1 (G2 entry M phase) enzyme activities are inhibited by conditionally inducible PADI4. p53 also expands its other downstream Bax to induce cytochrome c release from mitochondria. According to these data, we suggest that PADI4 induces apoptosis mainly through cell cycle arrest and mitochondria-mediated pathway. Furthermore, p53 features in PADI4-induced apoptosis by increasing intracellular p21 to control cell cycle and by Bax accumulation to decline Bcl-2 function, destroy delta psi(m), release cytochrome c to cytoplasm and activate the caspase cascade.

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Year:  2006        PMID: 16502257     DOI: 10.1007/s10495-006-3715-4

Source DB:  PubMed          Journal:  Apoptosis        ISSN: 1360-8185            Impact factor:   4.677


  37 in total

1.  HLA-DR1001 presents "altered-self" peptides derived from joint-associated proteins by accepting citrulline in three of its binding pockets.

Authors:  Eddie A James; Antonis K Moustakas; John Bui; George K Papadopoulos; George Bondinas; Jane H Buckner; William W Kwok
Journal:  Arthritis Rheum       Date:  2010-10

2.  Deimination is regulated at multiple levels including auto-deimination of peptidylarginine deiminases.

Authors:  Marie-Claire Méchin; Fanny Coudane; Véronique Adoue; Jacques Arnaud; Hélène Duplan; Marie Charveron; Anne-Marie Schmitt; Hidenari Takahara; Guy Serre; Michel Simon
Journal:  Cell Mol Life Sci       Date:  2010-01-29       Impact factor: 9.261

3.  The development of N-α-(2-carboxyl)benzoyl-N(5)-(2-fluoro-1-iminoethyl)-l-ornithine amide (o-F-amidine) and N-α-(2-carboxyl)benzoyl-N(5)-(2-chloro-1-iminoethyl)-l-ornithine amide (o-Cl-amidine) as second generation protein arginine deiminase (PAD) inhibitors.

Authors:  Corey P Causey; Justin E Jones; Jessica L Slack; Daisuke Kamei; Larry E Jones; Venkataraman Subramanian; Bryan Knuckley; Pedram Ebrahimi; Alexander A Chumanevich; Yuan Luo; Hiroshi Hashimoto; Mamoru Sato; Lorne J Hofseth; Paul R Thompson
Journal:  J Med Chem       Date:  2011-09-16       Impact factor: 7.446

4.  N-α-benzoyl-N5-(2-chloro-1-iminoethyl)-L-ornithine amide, a protein arginine deiminase inhibitor, reduces the severity of murine collagen-induced arthritis.

Authors:  Van C Willis; Alison M Gizinski; Nirmal K Banda; Corey P Causey; Bryan Knuckley; Kristen N Cordova; Yuan Luo; Brandt Levitt; Magdalena Glogowska; Piyanka Chandra; Liudmila Kulik; William H Robinson; William P Arend; Paul R Thompson; V Michael Holers
Journal:  J Immunol       Date:  2011-02-23       Impact factor: 5.422

5.  Caudatin Inhibits Human Glioma Cells Growth Through Triggering DNA Damage-Mediated Cell Cycle Arrest.

Authors:  Xiao-yan Fu; Shuai Zhang; Kun Wang; Ming-feng Yang; Cun-dong Fan; Bao-liang Sun
Journal:  Cell Mol Neurobiol       Date:  2015-04-10       Impact factor: 5.046

Review 6.  Protein arginine deiminase 4 (PAD4): Current understanding and future therapeutic potential.

Authors:  Justin E Jones; Corey P Causey; Bryan Knuckley; Jessica L Slack-Noyes; Paul R Thompson
Journal:  Curr Opin Drug Discov Devel       Date:  2009-09

7.  PADI4 and tumourigenesis.

Authors:  Xiaotian Chang; Kehua Fang
Journal:  Cancer Cell Int       Date:  2010-03-12       Impact factor: 5.722

8.  Protein arginine deiminase 4: evidence for a reverse protonation mechanism.

Authors:  Bryan Knuckley; Monica Bhatia; Paul R Thompson
Journal:  Biochemistry       Date:  2007-05-12       Impact factor: 3.162

9.  Mechanical stretching elevates peptidyl arginine deiminase 2 expression in astrocytes.

Authors:  Mabel E Algeciras; Hidenari Takahara; Sanjoy K Bhattacharya
Journal:  Curr Eye Res       Date:  2008-11       Impact factor: 2.424

10.  Peptidylarginine Deiminase IV Regulates Breast Cancer Stem Cells via a Novel Tumor Cell-Autonomous Suppressor Role.

Authors:  Nellie Moshkovich; Humberto J Ochoa; Binwu Tang; Howard H Yang; Yuan Yang; Jing Huang; Maxwell P Lee; Lalage M Wakefield
Journal:  Cancer Res       Date:  2020-04-07       Impact factor: 12.701

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