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在细菌脂多糖诱导的大鼠炎症过程中肝间隙连接通讯的中断

Interruption of hepatic gap junctional communication in the rat during inflammation induced by bacterial lipopolysaccharide.

作者信息

De Maio A, Gingalewski C, Theodorakis N G, Clemens M G

机构信息

Department of Physiology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Shock. 2000 Jul;14(1):53-9. doi: 10.1097/00024382-200014010-00010.

Abstract

Gap junctional cellular communication is important in the propagation of signals that coordinate hepatic metabolism. Hepatocytes express two different connexin (Cx) genes, Cx32 and Cx26, which encode for the subunit component of gap junction channels. Previous studies have shown that the expression of hepatic Cx32 is reduced during inflammatory conditions. The objective of this study was to evaluate whether this decrease in Cx32 expression results in a decrease in hepatic gap junctional communication. Transfer of the dye Lucifer Yellow between hepatocytes was measured after microinjection of single cells in an isolated perfused liver. Livers were harvested from rats subjected to an inflammatory condition induced by administration of bacterial lipopolysaccharide (LPS). A decrease in gap junctional cellular communication was observed within 6 h of the LPS treatment. This decrease in dye coupling was reversible, because gap junctional communication returned to control levels within 48 h of the LPS injection. The inhibition of hepatic gap junctional communication was associated with the disappearance of Cx32 and Cx26 from the hepatocyte plasma membrane as detected by indirect immunostaining. Cx32 mRNA levels were also reduced during inflammation as previously reported. However, Cx26 mRNA levels were unaffected or even transiently increased after the injection of LPS without significant increase in the polypeptide level. Thus, the down-regulation of Cx32 and Cx26 from the hepatocyte surface is apparently due to a rapid degradation of the polypeptide from the cell surface. We hypothesize that this loss of gap junctional cellular communication within the liver may contribute to the disordered hepatic metabolic that occurs during inflammatory states.

摘要

缝隙连接细胞通讯在协调肝脏代谢的信号传导中起着重要作用。肝细胞表达两种不同的连接蛋白(Cx)基因,即Cx32和Cx26,它们编码缝隙连接通道的亚基成分。先前的研究表明,在炎症状态下肝脏Cx32的表达会降低。本研究的目的是评估Cx32表达的这种下降是否会导致肝脏缝隙连接通讯的减少。在分离的灌注肝脏中对单个细胞进行微量注射后,测量肝细胞之间染料鲁米诺黄的转移。从经细菌脂多糖(LPS)诱导炎症的大鼠中获取肝脏。在LPS处理后6小时内观察到缝隙连接细胞通讯减少。这种染料偶联的减少是可逆的,因为在LPS注射后48小时内缝隙连接通讯恢复到对照水平。通过间接免疫染色检测到,肝脏缝隙连接通讯的抑制与Cx32和Cx26从肝细胞膜上消失有关。如先前报道,在炎症期间Cx32 mRNA水平也降低。然而,注射LPS后Cx26 mRNA水平未受影响,甚至短暂升高,而多肽水平没有显著增加。因此,Cx32和Cx26从肝细胞表面的下调显然是由于多肽从细胞表面的快速降解。我们推测肝脏内缝隙连接细胞通讯的这种丧失可能导致炎症状态下发生的肝脏代谢紊乱。

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