Literature DB >> 15784731

Type 3 repeat/C-terminal domain of thrombospondin-1 triggers caspase-independent cell death through CD47/alphavbeta3 in promyelocytic leukemia NB4 cells.

Anne Saumet1, Mouna Ben Slimane, Michel Lanotte, Jack Lawler, Véronique Dubernard.   

Abstract

By means of its antiangiogenic activity, thrombospondin-1 (TSP-1) exerts indirect antitumoral action on solid tumors. Here, we investigated potential antitumor action in an in vitro cell model for promyelocytic leukemia (NB4-LR1), resistant to retinoid maturation. Purified soluble TSP-1 added to cultures induced a strong dose-dependent growth inhibition and a slowly developing maturation-independent cell death. Recombinant fragments of TSP-1 allowed mapping of these activities to its type 3 repeat/C-terminal domain, features that are distinct from those of TSP-1 action on solid tumors, previously ascribed to the type 1 repeat domain. Cell death in leukemia was characterized as a caspase-independent mechanism, without DNA fragmentation, but phosphatidylserine externalization followed by membrane permeabilization. Mitochondria membrane depolarization was inherent to TSP-1 action but did not produce release of death-promoting proteins (eg, noncaspase apoptosis regulators, apoptosis-induced factor [AIF], endonuclease G, or Omi/HtrA2 or the caspase regulators, cytochrome c or second mitochondrial activator of caspase/direct inhibitor of apoptosis protein-binding protein with low isoelectric point [Smac/DIABLO]). Although detected, reactive oxygen species (ROS) production was likely not involved in the death process. Finally, receptor agonist RFYVVM and RGD peptides indicated that TSP-1 death effects are mediated by membrane receptors CD47 and alphavbeta3. These results demonstrated a new domain-specific antitumoral activity of TSP-1 on a leukemia cell line, which extends TSP-1 therapeutic potential outside the area of vascularized solid tumors.

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Year:  2005        PMID: 15784731     DOI: 10.1182/blood-2004-09-3585

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  33 in total

Review 1.  CD47 update: a multifaceted actor in the tumour microenvironment of potential therapeutic interest.

Authors:  E Sick; A Jeanne; C Schneider; S Dedieu; K Takeda; L Martiny
Journal:  Br J Pharmacol       Date:  2012-12       Impact factor: 8.739

Review 2.  Activated CD47 regulates multiple vascular and stress responses: implications for acute kidney injury and its management.

Authors:  Natasha M Rogers; Mingyi Yao; Enrico M Novelli; Angus W Thomson; David D Roberts; Jeffrey S Isenberg
Journal:  Am J Physiol Renal Physiol       Date:  2012-08-08

Review 3.  Thrombospondin-1 and CD47 regulation of cardiac, pulmonary and vascular responses in health and disease.

Authors:  Natasha M Rogers; Maryam Sharifi-Sanjani; Gábor Csányi; Patrick J Pagano; Jeffrey S Isenberg
Journal:  Matrix Biol       Date:  2014-01-11       Impact factor: 11.583

4.  CD47 deficiency confers cell and tissue radioprotection by activation of autophagy.

Authors:  David R Soto-Pantoja; Thomas W Miller; Michael L Pendrak; William G DeGraff; Camille Sullivan; Lisa A Ridnour; Mones Abu-Asab; David A Wink; Maria Tsokos; David D Roberts
Journal:  Autophagy       Date:  2012-08-09       Impact factor: 16.016

5.  Therapeutic Targeting of CD47 to Modulate Tissue Responses to Ischemia and Radiation.

Authors:  David R Soto-Pantoja; Jeff S Isenberg; David D Roberts
Journal:  J Genet Syndr Gene Ther       Date:  2011-09-26

Review 6.  Programmed cell removal: a new obstacle in the road to developing cancer.

Authors:  Mark P Chao; Ravindra Majeti; Irving L Weissman
Journal:  Nat Rev Cancer       Date:  2011-12-08       Impact factor: 60.716

7.  CD47 knockout mice exhibit improved recovery from spinal cord injury.

Authors:  Scott A Myers; William H DeVries; Kariena R Andres; Mark J Gruenthal; Richard L Benton; James B Hoying; Theo Hagg; Scott R Whittemore
Journal:  Neurobiol Dis       Date:  2010-12-17       Impact factor: 5.996

8.  Development of a prosaposin-derived therapeutic cyclic peptide that targets ovarian cancer via the tumor microenvironment.

Authors:  Suming Wang; Anna Blois; Tina El Rayes; Joyce F Liu; Michelle S Hirsch; Karsten Gravdal; Sangeetha Palakurthi; Diane R Bielenberg; Lars A Akslen; Ronny Drapkin; Vivek Mittal; Randolph S Watnick
Journal:  Sci Transl Med       Date:  2016-03-09       Impact factor: 17.956

9.  Txr1: an important factor in oxaliplatin resistance in gastric cancer.

Authors:  Jingtao Bi; Zhigang Bai; Xuemei Ma; Jianning Song; Yantong Guo; Jingming Zhao; Xin Yi; Shiwei Han; Zhongtao Zhang
Journal:  Med Oncol       Date:  2013-12-21       Impact factor: 3.064

Review 10.  Thrombospondins: old players, new games.

Authors:  Olga Stenina-Adognravi
Journal:  Curr Opin Lipidol       Date:  2013-10       Impact factor: 4.776

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