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大鼠局灶性脑缺血后星形胶质细胞缝隙连接和连接蛋白43的免疫识别、超微结构及磷酸化状态

Immunorecognition, ultrastructure and phosphorylation status of astrocytic gap junctions and connexin43 in rat brain after cerebral focal ischaemia.

作者信息

Li W E, Ochalski P A, Hertzberg E L, Nagy J I

机构信息

Department of Physiology, University of Manitoba, Winnipeg, Canada.

出版信息

Eur J Neurosci. 1998 Jul;10(7):2444-63. doi: 10.1046/j.1460-9568.1998.00253.x.

Abstract

Gap junctions between astrocytes support a functional syncytium that is thought to play an important role in neural homeostasis. In order to investigate regulation of this syncytium and of connexin43 (Cx43), a principal astrocytic gap junction protein, we determined the sequelae of gap junction and Cx43 disposition in a rat cerebral focal ischaemia model with various ischaemia/reperfusion times using sequence-specific anti-Cx43 antibodies (designated 13-8300, 18A, 16A and 71-0700) that exhibit differential recognition of Cx43, perhaps reflecting functional aspects of gap junctions. Antibody 13-8300 specifically detects only an unphosphorylated form of Cx43 in both Western blots and tissue sections. In hypothalamus after brief (15 min) ischaemic injury, Cx43 at intact gap junctions undergoes dephosphorylation, accompanied by reduced epitope recognition by antibodies 16A and 71-0700. Tissue examined 24 h after reperfusion showed that these effects were reversible. Astrocytic gap junction internalization occurring 1 h after ischaemia was accompanied by decreased immunodetection with 13-8300. At this time, gap junctions were absent in the ischaemic core, coinciding with a loss of Cx43 recognition with 18A and 13-8300, but elevated labelling of internalized Cx43 with 16A and 71-0700. Unphosphorylated Cx43 persisted at intact gap junctions confined to a thin corridor at the ischaemic penumbra which contained presumptive apoptotic cell profiles. Similar results were obtained in ischaemic striatum and cerebral cortex, though with a delayed time course that depended on the severity of the ischaemic insult. These results demonstrate that astrocytic Cx43 epitope masking, dephosphorylation and cellular redistribution occur after ischaemic brain injury, proceed as a temporally and spatially ordered sequence of events and culminate in differential patterns of Cx43 modification and sequestration at the lesion centre and periphery. These observations suggest an attempt by astrocytes in the vicinity of injury to remodel the junctional syncytium according to altered tissue homeostatic requirements.

摘要

星形胶质细胞之间的缝隙连接支持一种功能性合体,人们认为这种合体在神经内环境稳定中发挥着重要作用。为了研究这种合体以及主要的星形胶质细胞缝隙连接蛋白连接蛋白43(Cx43)的调节机制,我们使用对Cx43具有不同识别能力的序列特异性抗Cx43抗体(分别命名为13 - 8300、18A、16A和71 - 0700,这可能反映了缝隙连接的功能方面),在具有不同缺血/再灌注时间的大鼠局灶性脑缺血模型中,确定了缝隙连接和Cx43分布变化后的一系列后果。抗体13 - 8300在蛋白质免疫印迹和组织切片中仅特异性检测到未磷酸化形式的Cx43。在短暂(15分钟)缺血损伤后的下丘脑,完整缝隙连接处的Cx43发生去磷酸化,同时伴随着抗体16A和71 - 0700对其表位识别的减少。再灌注24小时后检查的组织显示这些效应是可逆的。缺血1小时后发生的星形胶质细胞缝隙连接内化伴随着13 - 8300免疫检测信号的降低。此时,缺血核心区域没有缝隙连接,这与18A和13 - 8300对Cx43识别的丧失一致,但16A和71 - 0700对内化Cx43的标记增加。未磷酸化的Cx43持续存在于完整缝隙连接中,局限于缺血半暗带的一条狭窄区域,该区域包含推测的凋亡细胞形态学特征。在缺血纹状体和大脑皮质也获得了类似结果,尽管时间进程有所延迟,这取决于缺血损伤的严重程度。这些结果表明,缺血性脑损伤后星形胶质细胞Cx43表位掩盖、去磷酸化和细胞重新分布会发生,以时间和空间有序的一系列事件形式进行,并最终在病变中心和周边形成Cx43修饰和隔离的不同模式。这些观察结果表明,损伤附近的星形胶质细胞试图根据改变的组织内环境稳定需求重塑连接性合体。

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