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在表达血小板衍生生长因子受体的T51B大鼠肝上皮细胞中,血小板衍生生长因子对间隙连接通讯的快速破坏及连接蛋白43的磷酸化作用

Rapid disruption of gap junctional communication and phosphorylation of connexin43 by platelet-derived growth factor in T51B rat liver epithelial cells expressing platelet-derived growth factor receptor.

作者信息

Hossain M Z, Ao P, Boynton A L

机构信息

Department of Molecular Medicine, Northwest Hospital, Seattle, Washington 98125, USA.

出版信息

J Cell Physiol. 1998 Jan;174(1):66-77. doi: 10.1002/(SICI)1097-4652(199801)174:1<66::AID-JCP8>3.0.CO;2-E.

Abstract

Gap junctional communication (GJC) between contacting cells has been postulated to be involved in the regulation of cell proliferation. This suggestion stems from numerous studies showing modulation of GJC by agents that influence cellular proliferation. Platelet-derived growth factor (PDGF), a strong mitogen, inhibits GJC in many cell types. To understand the molecular nature of the signal transduction pathway responsible for the GJC blockade, T51B rat liver epithelial cells, which lack endogenous PDGF receptor (PDGFr), were infected with a retrovirus containing either wild-type full-length cDNA of human PDGFr beta (Kin+) or a mutant PDGFr beta lacking receptor tyrosine kinase activity (Kin-). PDGF caused a complete but transient interruption of cell communication in Kin+ cells within 15-20 min of addition. This interruption of GJC was not associated with a gross destabilization of gap junction plaques but with the phosphorylation of connexin43 (Cx43), the only known gap junction protein expressed in these cells. These effects were exhibited in either control T51B cells or in Kin- cells, indicating a requirement of the receptor tyrosine kinase activity. Further examination revealed that the newly phosphorylated Cx43 then undergoes a rapid degradation utilizing the lysosomal pathway resulting in a decreased total Cx43 protein level. The re-establishment of GJC following PDGF treatment was dependent on protein synthesis. This report describes a suitable cell system which is currently being utilized for the characterization of the PDGF signaling pathway responsible for the inhibition of GJC.

摘要

接触细胞间的间隙连接通讯(GJC)被认为参与细胞增殖的调控。这一观点源于众多研究,这些研究表明影响细胞增殖的因子可调节GJC。血小板衍生生长因子(PDGF)是一种强有丝分裂原,在许多细胞类型中可抑制GJC。为了解负责GJC阻断的信号转导途径的分子本质,将缺乏内源性PDGF受体(PDGFr)的T51B大鼠肝上皮细胞用含有人类PDGFrβ野生型全长cDNA(Kin+)或缺乏受体酪氨酸激酶活性的突变型PDGFrβ(Kin-)的逆转录病毒感染。添加PDGF后15 - 20分钟内,Kin+细胞中的细胞通讯完全但短暂中断。GJC的这种中断与间隙连接斑的总体不稳定无关,而是与连接蛋白43(Cx43)的磷酸化有关,Cx43是这些细胞中唯一已知表达的间隙连接蛋白。这些效应在对照T51B细胞或Kin-细胞中均有表现,表明需要受体酪氨酸激酶活性。进一步研究发现,新磷酸化的Cx43随后通过溶酶体途径迅速降解,导致Cx43总蛋白水平降低。PDGF处理后GJC的重新建立依赖于蛋白质合成。本报告描述了一种合适的细胞系统,目前正用于表征负责抑制GJC的PDGF信号转导途径。

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