Phosphorylation of connexin 43 induced by traumatic brain injury promotes exosome release

被引:36
作者
Chen, Wei [1 ]
Guo, Yijun [1 ]
Yang, Wenjin [1 ]
Chen, Lei [1 ]
Ren, Dabin [1 ]
Wu, Chenxing [1 ]
He, Bin [1 ]
Zheng, Ping [1 ]
Tong, Wusong [1 ]
机构
[1] Peoples Hosp Pu Dong New Area, 490 South Chuanhuan Rd, Shanghai 201299, Peoples R China
关键词
connexin; 43; ERK; exosome-based therapy; hippocampus; traumatic brain injury; GAP-JUNCTIONAL COMMUNICATION; FIBRILLARY ACIDIC PROTEIN; NEUROVASCULAR PLASTICITY; REACTIVE ASTROCYTES; FUNCTIONAL RECOVERY; STROMAL CELLS; DEATH; REDUCTION; ISCHEMIA; MODEL;
D O I
10.1152/jn.00654.2017
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Traumatic brain injury (TBI) caused by the external force leads to the neuronal dysfunction and even death. TBI has been reported to significantly increase the phosphorylation of glial gap junction protein connexin 43 (Cx43), which in turn propagates damages into surrounding brain tissues. However, the neuroprotective and anti-apoptosis effects of glia-derived exosomes have also been implicated in recent studies. Therefore, we detected whether TBI-induced phosphorylation of Cx43 would promote exosome release in rat brain. To generate TBI model, adult male Sprague-Dawley rats were subjected to lateral fluid percussion injury. Phosphorylated Cx43 protein levels and exosome activities were quantified using Western blot analysis following TBI. Long-term potentiation (LTP) was also tested in rat hippocampal slices. TBI significantly increased the phosphorylated Cx43 and exosome markers expression in rat ipsilateral hippocampus, but not cortex. Blocking the activity of Cx43 or ERK, but not JNK, significantly suppressed TBI-induced exosome release in hippocampus. Furthermore, TBI significantly inhibited the induction of LTP in hippocampal slices, which could be partially but significantly restored by pretreatment with exosomes. The results imply that TBI-activated Cx43 could mediate a nociceptive effect by propagating the brain damages, as well as a neuroprotective effect by promoting exosome release. NEW & NOTEWORTHY We have demonstrated in rat traumatic brain injury (TBI) models that both phosphorylated connexin 43 (p-Cx43) expression and exosome release were elevated in the hippocampus following TBI. The promoted exosome release depends on the phosphorylation of Cx43 and requires ERK signaling activation. Exosome treatment could partially restore the attenuated long-term potentiation. Our results provide new insight for future therapeutic direction on the functional recovery of TBI by promoting p-Cx43-dependent exosome release but limiting the gap junction-mediated bystander effect.
引用
收藏
页码:305 / 311
页数:7
相关论文
共 35 条
[1]   Electrical coupling and neuronal synchronization in the mammalian brain [J].
Bennett, MVL ;
Zukin, RS .
NEURON, 2004, 41 (04) :495-511
[2]  
BENNETT MVL, 1991, NEURON, V6, P305, DOI 10.1016/0896-6273(91)90241-Q
[3]   Role of connexin-based gap junction channels and hemichannels in ischemia-induced cell death in nervous tissue [J].
Contreras, JE ;
Sánchez, HA ;
Véliz, LP ;
Bukauskas, FF ;
Bennett, MVL ;
Sáez, JC .
BRAIN RESEARCH REVIEWS, 2004, 47 (1-3) :290-303
[4]   Mechanism of v-Src- and mitogen-activated protein kinase-induced reduction of gap junction communication [J].
Cottrell, GT ;
Lin, R ;
Warn-Cramer, BJ ;
Lau, AF ;
Burt, JM .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2003, 284 (02) :C511-C520
[5]   Connexin43 antisense oligodeoxynucleotide treatment down-regulates the inflammatory response in an in vitro interphase organotypic culture model of optic nerve ischaemia [J].
Danesh-Meyer, Helen V. ;
Huang, Rex ;
Nicholson, Louise F. B. ;
Green, Colin R. .
JOURNAL OF CLINICAL NEUROSCIENCE, 2008, 15 (11) :1253-1263
[6]   Novel TRH analog improves motor and cognitive recovery after traumatic brain injury in rodents [J].
Faden, AI ;
Fox, GB ;
Fan, L ;
Araldi, GL ;
Qiao, LX ;
Wang, SM ;
Kozikowski, AP .
AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 1999, 277 (04) :R1196-R1204
[7]   Specific gap junctions enhance the neuronal vulnerability to brain traumatic injury [J].
Frantseva, MV ;
Kokarovtseva, L ;
Naus, CG ;
Carlen, PL ;
MacFabe, D ;
Velazquez, JLP .
JOURNAL OF NEUROSCIENCE, 2002, 22 (03) :644-653
[8]   Control of gap-junctional communication in astrocytic networks [J].
Giaume, C ;
McCarthy, KD .
TRENDS IN NEUROSCIENCES, 1996, 19 (08) :319-325
[9]   Therapeutic Applications of Extracellular Vesicles: Clinical Promise and Open Questions [J].
Gyoergy, Bence ;
Hung, Michelle E. ;
Breakefield, Xandra O. ;
Leonard, Joshua N. .
ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, VOL 55, 2015, 55 :439-464
[10]   Stem Cell-Based Therapies for Ischemic Stroke [J].
Hao, Lei ;
Zou, Zhongmin ;
Tian, Hong ;
Zhang, Yubo ;
Zhou, Huchuan ;
Liu, Lei .
BIOMED RESEARCH INTERNATIONAL, 2014, 2014