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连接蛋白32缺陷型小鼠外分泌胰腺淀粉酶分泌增强。

Enhanced secretion of amylase from exocrine pancreas of connexin32-deficient mice.

作者信息

Chanson M, Fanjul M, Bosco D, Nelles E, Suter S, Willecke K, Meda P

机构信息

Department of Pediatrics, University of Geneva, Switzerland.

出版信息

J Cell Biol. 1998 Jun 1;141(5):1267-75. doi: 10.1083/jcb.141.5.1267.

Abstract

To determine whether junctional communication between pancreatic acinar cells contributes to their secretory function in vivo, we have compared wild-type mice, which express the gap junctional proteins connexin32 (Cx32) and connexin26, to mice deficient for the Cx32 gene. Pancreatic acinar cells from Cx32 (-/-) mice failed to express Cx32 as evidenced by reverse transcription-PCR and immunolabeling and showed a marked reduction (4.8- and 25-fold, respectively) in the number and size of gap junctions. Dye transfer studies showed that the extent of intercellular communication was inhibited in Cx32 (-/-) acini. However, electrical coupling was detected by dual patch clamp recording in Cx32 (-/-) acinar cell pairs. Although wild-type and Cx32 (-/-) acini were similarly stimulated to release amylase by carbamylcholine, Cx32 (-/-) acini showed a twofold increase of their basal secretion. This effect was caused by an increase in the proportion of secreting acini, as detected with a reverse hemolytic plaque assay. Blood measurements further revealed that Cx32 (-/-) mice had elevated basal levels of circulating amylase. The results, which demonstrate an inverse relationship between the extent of acinar cell coupling and basal amylase secretion in vivo, support the view that the physiological recruitment of secretory acinar cells is regulated by gap junction mediated intercellular communication.

摘要

为了确定胰腺腺泡细胞之间的连接通讯是否有助于其在体内的分泌功能,我们将表达缝隙连接蛋白连接蛋白32(Cx32)和连接蛋白26的野生型小鼠与Cx32基因缺陷的小鼠进行了比较。逆转录-聚合酶链反应和免疫标记证明,Cx32(-/-)小鼠的胰腺腺泡细胞未能表达Cx32,且缝隙连接的数量和大小显著减少(分别减少4.8倍和25倍)。染料转移研究表明,Cx32(-/-)腺泡中细胞间通讯的程度受到抑制。然而,通过双膜片钳记录在Cx32(-/-)腺泡细胞对中检测到了电偶联。尽管野生型和Cx32(-/-)腺泡受到氨甲酰胆碱刺激后释放淀粉酶的情况相似,但Cx32(-/-)腺泡的基础分泌增加了两倍。如反向溶血空斑试验所检测到的,这种效应是由分泌腺泡比例的增加引起的。血液检测进一步显示,Cx32(-/-)小鼠循环淀粉酶的基础水平升高。这些结果表明体内腺泡细胞偶联程度与基础淀粉酶分泌之间呈负相关,支持了分泌腺泡细胞的生理募集受缝隙连接介导的细胞间通讯调节这一观点。

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