Netrin-1 protects hypoxia-induced mitochondrial apoptosis through HSP27 expression via DCC- and integrin α6β4-dependent Akt, GSK-3β, and HSF-1 in mesenchymal stem cells

被引:56
作者
Son, T. W. [1 ,2 ]
Yun, S. P. [2 ,3 ]
Yong, M. S. [2 ,3 ]
Seo, B. N. [2 ,3 ]
Ryu, J. M. [2 ,3 ]
Youn, H. Y. [1 ,2 ]
Oh, Y. M. [4 ,5 ]
Han, H. J. [2 ,3 ]
机构
[1] Seoul Natl Univ, Dept Vet Internal Med, Coll Vet Med, Seoul 151741, South Korea
[2] Seoul Natl Univ, Res Inst Vet Sci, Seoul 151741, South Korea
[3] Seoul Natl Univ, Dept Vet Physiol, Coll Vet Med, Seoul 151741, South Korea
[4] Univ Ulsan, Coll Med, Asan Med Ctr, Dept Pulm & Crit Care Med, Seoul, South Korea
[5] Univ Ulsan, Coll Med, Asan Med Ctr, Clin Res Ctr Chron Obstruct Airway Dis, Seoul, South Korea
来源
CELL DEATH & DISEASE | 2013年 / 4卷
关键词
umbilical cord blood-derived mesenchymal stem cell; netrin-1; hypoxic injury; apoptosis; cytoprotection; heat shock protein; HEAT-SHOCK PROTEINS; RECEPTOR DCC; TUMOR-GROWTH; PROLIFERATION; PHOSPHORYLATION; INVOLVEMENT; ACTIVATION; PI3K/AKT; SURVIVAL; KINASE;
D O I
10.1038/cddis.2013.94
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Netrin (Ntn) has the potential to be successfully applied as an anti-apoptotic agent with a high affinity for tissue, for therapeutic strategies of umbilical cord blood-derived mesenchymal stem cells (UCB-MSC), although the mechanism by which Ntn-1 protects hypoxic injury has yet to be identified. Therefore, the present study examined the effect of Ntn-1 on hypoxia-induced UCB-MSC apoptosis, as well as the potential underlying mechanisms of its protective effect. Hypoxia (72 h) reduced cell viability (MTT reduction, and [H-3]-thymidine incorporation) and cell number, and induced apoptosis (annexin and/or PI positive), which were reversed by Ntn-1 (10 ng/ml). Moreover, Ntn-1 decreased the increase of hypoxia-induced Bax, cleaved caspase-9, and -3, but blocked the decrease of hypoxia-reduced Bcl-2. Next, in order to examine the Ntn-1-related signaling cascade in the protection of hypoxic injury, we analyzed six Ntn receptors in UCB-MSC. We identified deleted in colorectal cancer (DCC) and integrin (IN) alpha 6 beta 4, except uncoordinated family member (UNC) 5A-C, and neogenin. Among them, IN a6b4 only was detected in lipid raft fractions. In addition, Ntn-1 induced the dissociation of DCC and APPL-1 complex, thereby stimulating the formation of APPL-1 and Akt2 complex. Ntn-1 also reversed the hypoxia-induced decrease of Akt and glycogen synthase kinase 3 beta (GSK-beta b) phosphorylation, which is involved in heat shock factor-1 (HSF-1) expression. Ntn-1-induced phospho-Akt and -GSK-3 beta were inhibited by DCC function-blocking antibody, IN a6b4 function-blocking antibody, and the Akt inhibitor. Hypoxia and/or Ntn-1 stimulated heat shock protein (HSP) 27 expression, which was blocked by HSF-1-specific small interfering RNA (siRNA). Furthermore, HSP27-specific siRNA reversed the Ntn-1-induced increase of phospho-Akt. Additionally, HSP27-specific siRNA attenuated the Ntn-1-reduced loss of mitochondrial membrane injury via the inhibition of cytochrome c (cyt c) release and formation of cyt c and HSP27 complex. Moreover, the inhibition of each signaling protein attenuated Ntn-1-induced blockage of apoptosis. In conclusion, Ntn-1-induced HSP27 protected hypoxic injury-related UCB-MSC apoptosis through DCC- and IN alpha 6 beta 4-dependent Akt, GSK-beta b, and HSF-1 signaling pathways. Cell Death and Disease (2013) 4, e563; doi:10.1038/cddis.2013.94; published online 28 March 2013
引用
收藏
页码:e563 / e563
页数:12
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