Literature DB >> 12819136

Comparative analysis of apoptosis and inflammation genes of mice and humans.

John C Reed1, Kutbuddin Doctor, Ana Rojas, Juan M Zapata, Christian Stehlik, Loredana Fiorentino, Jason Damiano, Wilfried Roth, Shu-Ichi Matsuzawa, Ruchi Newman, Shinichi Takayama, Hiroyuki Marusawa, Famming Xu, Guy Salvesen, Adam Godzik.   

Abstract

Apoptosis (programmed cell death) plays important roles in many facets of normal mammalian physiology. Host-pathogen interactions have provided evolutionary pressure for apoptosis as a defense mechanism against viruses and microbes, sometimes linking apoptosis mechanisms with inflammatory responses through NFkappaB induction. Proteins involved in apoptosis and NFkappaB induction commonly contain evolutionarily conserved domains that can serve as signatures for identification by bioinformatics methods. Using a combination of public (NCBI) and private (RIKEN) databases, we compared the repertoire of apoptosis and NFkappaB-inducing genes in humans and mice from cDNA/EST/genomic data, focusing on the following domain families: (1) Caspase proteases; (2) Caspase recruitment domains (CARD); (3) Death Domains (DD); (4) Death Effector Domains (DED); (5) BIR domains of Inhibitor of Apoptosis Proteins (IAPs); (6) Bcl-2 homology (BH) domains of Bcl-2 family proteins; (7) Tumor Necrosis Factor (TNF)-family ligands; (8) TNF receptors (TNFR); (9) TIR domains; (10) PAAD (PYRIN; PYD, DAPIN); (11) nucleotide-binding NACHT domains; (12) TRAFs; (13) Hsp70-binding BAG domains; (14) endonuclease-associated CIDE domains; and (15) miscellaneous additional proteins. After excluding redundancy due to alternative splice forms, sequencing errors, and other considerations, we identified cDNAs derived from a total of 227 human genes among these domain families. Orthologous murine genes were found for 219 (96%); in addition, several unique murine genes were found, which appear not to have human orthologs. This mismatch may be due to the still fragmentary information about the mouse genome or genuine differences between mouse and human repertoires of apoptotic genes. With this caveat, we discuss similarities and differences in human and murine genes from these domain families.

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Year:  2003        PMID: 12819136      PMCID: PMC403667          DOI: 10.1101/gr.1053803

Source DB:  PubMed          Journal:  Genome Res        ISSN: 1088-9051            Impact factor:   9.043


  110 in total

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Review 2.  The PYRIN domain: a novel motif found in apoptosis and inflammation proteins.

Authors:  J Bertin; P S DiStefano
Journal:  Cell Death Differ       Date:  2000-12       Impact factor: 15.828

3.  Splicing and dicing apoptosis genes.

Authors:  J C Reed
Journal:  Nat Biotechnol       Date:  1999-11       Impact factor: 54.908

Review 4.  The TNF and TNF receptor superfamilies: integrating mammalian biology.

Authors:  R M Locksley; N Killeen; M J Lenardo
Journal:  Cell       Date:  2001-02-23       Impact factor: 41.582

Review 5.  Toll meets bacterial CpG-DNA.

Authors:  H Wagner
Journal:  Immunity       Date:  2001-05       Impact factor: 31.745

6.  T cell-specific FADD-deficient mice: FADD is required for early T cell development.

Authors:  N H Kabra; C Kang; L C Hsing; J Zhang; A Winoto
Journal:  Proc Natl Acad Sci U S A       Date:  2001-05-15       Impact factor: 11.205

7.  PAAD - a new protein domain associated with apoptosis, cancer and autoimmune diseases.

Authors:  K Pawłowski; F Pio; Z Chu; J C Reed; A Godzik
Journal:  Trends Biochem Sci       Date:  2001-02       Impact factor: 13.807

8.  Bcl-G, a novel pro-apoptotic member of the Bcl-2 family.

Authors:  B Guo; A Godzik; J C Reed
Journal:  J Biol Chem       Date:  2000-10-27       Impact factor: 5.157

9.  Solution structure of DFF40 and DFF45 N-terminal domain complex and mutual chaperone activity of DFF40 and DFF45.

Authors:  P Zhou; A A Lugovskoy; J S McCarty; P Li; G Wagner
Journal:  Proc Natl Acad Sci U S A       Date:  2001-05-22       Impact factor: 11.205

10.  Soluble decoy receptor 3 is expressed by malignant gliomas and suppresses CD95 ligand-induced apoptosis and chemotaxis.

Authors:  W Roth; S Isenmann; M Nakamura; M Platten; W Wick; P Kleihues; M Bähr; H Ohgaki; A Ashkenazi; M Weller
Journal:  Cancer Res       Date:  2001-03-15       Impact factor: 12.701

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  39 in total

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Authors:  Pablo Fuentes-Prior; Guy S Salvesen
Journal:  Biochem J       Date:  2004-12-01       Impact factor: 3.857

2.  The inflammasome: in memory of Dr. Jurg Tschopp.

Authors:  M Dagenais; A Skeldon; M Saleh
Journal:  Cell Death Differ       Date:  2011-11-11       Impact factor: 15.828

Review 3.  Inhibiting the inflammasome: one domain at a time.

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Journal:  Immunol Rev       Date:  2015-05       Impact factor: 12.988

4.  Cloning of cDNAs with PDCD2(C) domain and their expressions during apoptosis of HEK293T cells.

Authors:  Qiu Chen; Kaixian Qian; Chengqi Yan
Journal:  Mol Cell Biochem       Date:  2005-12       Impact factor: 3.396

Review 5.  COPs and POPs: modulators of inflammasome activity.

Authors:  Christian Stehlik; Andrea Dorfleutner
Journal:  J Immunol       Date:  2007-12-15       Impact factor: 5.422

6.  A variant of the Cockayne syndrome B gene ERCC6 confers risk of lung cancer.

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Journal:  Hum Mutat       Date:  2008-01       Impact factor: 4.878

7.  Developmental Regulation of Mitochondrial Apoptosis by c-Myc Governs Age- and Tissue-Specific Sensitivity to Cancer Therapeutics.

Authors:  Kristopher A Sarosiek; Cameron Fraser; Nathiya Muthalagu; Patrick D Bhola; Weiting Chang; Samuel K McBrayer; Adam Cantlon; Sudeshna Fisch; Gail Golomb-Mello; Jeremy A Ryan; Jing Deng; Brian Jian; Chris Corbett; Marti Goldenberg; Joseph R Madsen; Ronglih Liao; Dominic Walsh; John Sedivy; Daniel J Murphy; Daniel Ruben Carrasco; Shenandoah Robinson; Javid Moslehi; Anthony Letai
Journal:  Cancer Cell       Date:  2016-12-22       Impact factor: 31.743

8.  No evidence of apoptotic cells in pemphigus acantholysis.

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Journal:  J Invest Dermatol       Date:  2014-01-31       Impact factor: 8.551

9.  Epoxyeicosatrienoic acids prevent cisplatin-induced renal apoptosis through a p38 mitogen-activated protein kinase-regulated mitochondrial pathway.

Authors:  Yingmei Liu; Xiaodan Lu; Sinh Nguyen; Jean L Olson; Heather K Webb; Deanna L Kroetz
Journal:  Mol Pharmacol       Date:  2013-10-03       Impact factor: 4.436

10.  Heterotypic interactions among NACHT domains: implications for regulation of innate immune responses.

Authors:  Jason S Damiano; Vasco Oliveira; Kate Welsh; John C Reed
Journal:  Biochem J       Date:  2004-07-01       Impact factor: 3.857

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