中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
KIF5B Promotes the Forward Transport and Axonal Function of the Voltage-Gated Sodium Channel Na(v)1.8

文献类型:期刊论文

作者Su, YY; Ye, MY; Li, L; Liu, C; Pan, J; Liu, WW; Jiang, YB; Jiang, XY; Zhang, X; Shu, YS
刊名JOURNAL OF NEUROSCIENCE
出版日期2013
卷号33期号:45页码:17884-17896
通讯作者Bao, L (reprint author), Chinese Acad Sci, Inst Biochem & Cell Biol, 320 Yue Yang Rd, Shanghai 200031, Peoples R China.,baolan@sibcb.ac.cn
英文摘要Na(v)1.8 is a tetrodotoxin-resistant voltage-gated sodium channel selectively expressed in primary sensory neurons. Peripheral inflammation and nerve injury induce Na(v)1.8 accumulation in peripheral nerves. However, the mechanisms and related significance of channel accumulation in nerves remains unclear. Here we report that KIF5B promotes the forward transport of Na(v)1.8 to the plasma membrane and axons in dorsal root ganglion (DRG) neurons of the rat. In peripheral inflammation induced through the intraplantar injection of complete Freund's adjuvant, increased KIF5 and Na(v)1.8 accumulation were observed in the sciatic nerve. The knock-down of KIF5B, a highly expressed member of the KIF5 family in DRGs, reduced the current density of Na(v)1.8 in both cultured DRG neurons and ND7-23 cells. Overexpression of KIF5B in ND7-23 cells increased the current density and surface expression of Nav1.8, which were abolished through brefeldin A treatment, whereas the increases were lost in KIF5B mutants defective in ATP hydrolysis or cargo binding. Overexpression of KIF5B also decreased the proteasome-associated degradation of Na(v)1.8. In addition, coimmunoprecipitation experiments showed interactions between the N terminus of Na(v)1.8 and the 511-620 aa sequence in the stalk domain of KIF5B. Furthermore, KIF5B increased Na(v)1.8 accumulation, Na(v)1.8 current, and neuronal excitability detected in the axons of cultured DRG neurons, which were completely abolished by the disruption of interactions between KIF5B and the N terminus of Nav1.8. Therefore, our results reveal that KIF5B is required for the forward transport and axonal function of Na(v)1.8, suggesting a mechanism for axonal accumulation of Na(v)1.8 in inflammatory pain.
学科主题Neurosciences & Neurology
类目[WOS]Neurosciences
关键词[WOS]PRIMARY SENSORY NEURONS ; ROOT GANGLION NEURONS ; TETRODOTOXIN-RESISTANT ; CURRENT-DENSITY ; DRG NEURONS ; NEUROPATHIC PAIN ; UP-REGULATION ; IN-VITRO ; EXPRESSION ; KINESIN
收录类别SCI
语种英语
WOS记录号WOS:000327019100034
版本出版稿
源URL[http://202.127.25.143/handle/331003/479]  
专题上海生化细胞研究所_上海生科院生化细胞研究所
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GB/T 7714
Su, YY,Ye, MY,Li, L,et al. KIF5B Promotes the Forward Transport and Axonal Function of the Voltage-Gated Sodium Channel Na(v)1.8[J]. JOURNAL OF NEUROSCIENCE,2013,33(45):17884-17896.
APA Su, YY.,Ye, MY.,Li, L.,Liu, C.,Pan, J.,...&Bao, L.(2013).KIF5B Promotes the Forward Transport and Axonal Function of the Voltage-Gated Sodium Channel Na(v)1.8.JOURNAL OF NEUROSCIENCE,33(45),17884-17896.
MLA Su, YY,et al."KIF5B Promotes the Forward Transport and Axonal Function of the Voltage-Gated Sodium Channel Na(v)1.8".JOURNAL OF NEUROSCIENCE 33.45(2013):17884-17896.

入库方式: OAI收割

来源:上海生物化学与细胞生物学研究所

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