Literature DB >> 11865200

Cell death regulation by the mammalian IAP antagonist Diablo/Smac.

A M Verhagen1, D L Vaux.   

Abstract

In Drosophila, the genetic locus 75CI1,2 is essential for all developmental cell death. Within this region are the genes for three pro-death proteins, Grim, Reaper and HID. These proteins are transcriptionally regulated and their expression tightly associated with cell death in the developing fly embryo. When ectopically expressed in the retina, Grim, Reaper and HID cause apoptosis and eye ablation. They have a short region of similarity at their N-termini through which they can interact with inhibitor of apoptosis (IAP) proteins, and it is by antagonising IAP inhibition of caspases that Grim, Reaper and HID promote cell death. The observation that Grim, Reaper and HID can interact with mammalian IAPs and induce apoptosis in mammalian cells suggested that mammalian IAP antagonists might also exist. Diablo/Smac, identified six years after the first description of a Drosophila IAP antagonist, is the only mammalian protein identified to date that is clearly functionally related to the Drosophila proteins. Since its discovery, there have been numerous studies investigating how Diablo/Smac interacts with IAPs and promotes cell death. Here we review what is currently known about Diablo/Smac and speculate on other mammalian IAP antagonists.

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Year:  2002        PMID: 11865200     DOI: 10.1023/a:1014318615955

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


  35 in total

1.  Inhibition of translation and induction of apoptosis by Bunyaviral nonstructural proteins bearing sequence similarity to reaper.

Authors:  Daniel A Colón-Ramos; Pablo M Irusta; Eugene C Gan; Michael R Olson; Jaewhan Song; Richard I Morimoto; Richard M Elliott; Mark Lombard; Robert Hollingsworth; J Marie Hardwick; Gary K Smith; Sally Kornbluth
Journal:  Mol Biol Cell       Date:  2003-07-11       Impact factor: 4.138

Review 2.  Death receptor signals to mitochondria.

Authors:  Roya Khosravi-Far; Mauro Degli Esposti
Journal:  Cancer Biol Ther       Date:  2004-11-18       Impact factor: 4.742

Review 3.  Motor neuron trophic factors: therapeutic use in ALS?

Authors:  Thomas W Gould; Ronald W Oppenheim
Journal:  Brain Res Rev       Date:  2010-10-21

4.  The first report of diablo in Megalobrama amblycephala: characterization, phylogenetic analysis, functional annotation and expression.

Authors:  Ngoc Tuan Tran; Ivan Jakovlić; Wei-Min Wang
Journal:  J Genet       Date:  2017-09       Impact factor: 1.166

5.  A New Role for the Mitochondrial Pro-apoptotic Protein SMAC/Diablo in Phospholipid Synthesis Associated with Tumorigenesis.

Authors:  Avijit Paul; Yakov Krelin; Tasleem Arif; Rina Jeger; Varda Shoshan-Barmatz
Journal:  Mol Ther       Date:  2017-12-24       Impact factor: 11.454

6.  Bcl-3 regulates UVB-induced apoptosis.

Authors:  Ingrid García; Gabriela Cosío; Floria Lizárraga; Gustavo Martínez-Ruiz; Jorge Meléndez-Zajgla; Gisela Ceballos; Magali Espinosa; Rosario Pacheco; Vilma Maldonado
Journal:  Hum Cell       Date:  2013-03-14       Impact factor: 4.174

Review 7.  Multiple molecular targets of resveratrol: Anti-carcinogenic mechanisms.

Authors:  Mohammad Athar; Jung Ho Back; Levy Kopelovich; David R Bickers; Arianna L Kim
Journal:  Arch Biochem Biophys       Date:  2009-06-15       Impact factor: 4.013

Review 8.  Genetic control of programmed cell death (apoptosis) in Drosophila.

Authors:  Dongbin Xu; Sarah E Woodfield; Tom V Lee; Yun Fan; Christian Antonio; Andreas Bergmann
Journal:  Fly (Austin)       Date:  2009-01-08       Impact factor: 2.160

9.  Fibroblast growth factor 2-mediated translational control of IAPs blocks mitochondrial release of Smac/DIABLO and apoptosis in small cell lung cancer cells.

Authors:  Olivier E Pardo; Adeline Lesay; Alexandre Arcaro; Rita Lopes; Bee Ling Ng; Patricia H Warne; Iain A McNeish; Teresa D Tetley; Nicholas R Lemoine; Huseyin Mehmet; Michael J Seckl; Julian Downward
Journal:  Mol Cell Biol       Date:  2003-11       Impact factor: 4.272

10.  Glucose metabolism inhibits apoptosis in neurons and cancer cells by redox inactivation of cytochrome c.

Authors:  Allyson E Vaughn; Mohanish Deshmukh
Journal:  Nat Cell Biol       Date:  2008-11-23       Impact factor: 28.824

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