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Autotaxin (lysoPLD/NPP2) protects fibroblasts from apoptosis through its enzymatic product, lysophosphatidic acid, utilizing albumin-bound substrate

Title
Autotaxin (lysoPLD/NPP2) protects fibroblasts from apoptosis through its enzymatic product, lysophosphatidic acid, utilizing albumin-bound substrate
Authors
Song J.Clair T.Ji H.N.Jung W.E.So Y.R.Shi N.L.Young M.A.Su Y.K.Sug H.L.Won S.P.Nam J.Y.Jung Y.L.Nam S.W.
Ewha Authors
이시내
SCOPUS Author ID
이시내scopusscopus
Issue Date
2005
Journal Title
Biochemical and Biophysical Research Communications
ISSN
0006-291XJCR Link
Citation
Biochemical and Biophysical Research Communications vol. 337, no. 3, pp. 967 - 975
Indexed
SCI; SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
Autotaxin (ATX) was originally identified as a potent tumor cell motility-stimulating factor that displays multiple enzymatic activities including ATPase, Type I nucleotide pyrophosphatase/phosphodiesterase, and lysophospholipase D, depending on its substrates. We demonstrate herein that ATX is a key regulator of extracellular lysophosphatidic acid (LPA) that can act as survival factor, in addition to its mitogenic activity in mouse fibroblasts. Introduction of atx gene into NIH3T3 cells resulted in resistance to conditional apoptosis induced by serum-deprivation, and exogenous ATX protein prevented cells from death by starvation. Flow cytometric analysis showed that co-treatment of ATX with lysophosphatidylcholine as substrate rescued NIH3T3 cells from cellular apoptosis, and this survival activity of ATX was also demonstrated by caspase-3 degradation and PARP cleavage resulting from the enzymatic activity of extracellular ATX. Furthermore, the effect of ATX in preventing apoptosis appears to be mediated through the G-protein-coupled receptor pathway followed by the activation of phosphoinositide 3-kinase and Akt pathway leading to enhanced cell survival. These findings provide novel insights into understanding the functions of ATX as a key regulator of bioactive phospholipids and suggest interventions to correct dysfunction in conditions of tumor cell growth and metastasis. © 2005 Elsevier Inc. All rights reserved.
DOI
10.1016/j.bbrc.2005.09.140
Appears in Collections:
의과대학 > 의학과 > Journal papers
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