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鸟苷酸环化酶C在再生大鼠肝脏中被非实质细胞和肝细胞上调。

Guanylyl cyclase C is up-regulated by nonparenchymal cells and hepatocytes in regenerating rat liver.

作者信息

Scheving L A, Russell W E

机构信息

Department of Pathology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-2576, USA.

出版信息

Cancer Res. 1996 Nov 15;56(22):5186-91.

PMID:8912855
Abstract

Guanylyl cyclase C (GC-C) is the receptor for the heat-stable enterotoxin produced by bacteria as well as for the newly discovered mammalian hormones guanylin and uroguanylin. Ligand activation of GC-C causes it to produce cyclic GMP inside target cells. Although once thought to be restricted to the intestine, GC-C mRNA has recently been detected in other tissues. We now examine the expression, localization, and activation of this glycoprotein after partial hepatectomy in rats. By immunoblot analysis, GC-C protein appeared as early as 4 h after partial hepatectomy, reached its maximal expression (a 30-fold increase) between 24 and 48 h, and returned to low baseline levels at 96 h. During the regenerative period, we detected two GC-C isoforms that differed in their size, temporal expression, and carbohydrase sensitivities. We showed that 131- and 140-kDa GC-C isoforms represented immature and mature GC-C glycoforms on the basis of endoglycosidase H and PNGase sensitivities. Cell separation experiments revealed that the nonparenchymal cell fractions of regenerating liver contained four times as much GC-C as purified hepatocytes. Immunohistochemistry confirmed these findings. The exuberant expression of GC-C by nonparenchymal cells and, to a lesser extent, hepatocytes suggests a role for cyclic GMP in liver regeneration.

摘要

鸟苷酸环化酶C(GC-C)是细菌产生的热稳定肠毒素以及新发现的哺乳动物激素鸟苷素和尿鸟苷素的受体。GC-C的配体激活使其在靶细胞内产生环磷酸鸟苷(cGMP)。尽管曾经认为GC-C仅限于肠道表达,但最近在其他组织中也检测到了GC-C mRNA。我们现在研究大鼠部分肝切除术后这种糖蛋白的表达、定位和激活情况。通过免疫印迹分析,GC-C蛋白在部分肝切除术后4小时就开始出现,在24至48小时之间达到最大表达水平(增加了30倍),并在96小时恢复到低基线水平。在再生期间,我们检测到两种GC-C同工型,它们在大小、时间表达和糖苷酶敏感性方面存在差异。基于内切糖苷酶H和PNGase敏感性,我们表明131 kDa和140 kDa的GC-C同工型分别代表未成熟和成熟的GC-C糖型。细胞分离实验表明,再生肝脏的非实质细胞部分所含的GC-C是纯化肝细胞的四倍。免疫组织化学证实了这些发现。非实质细胞以及程度较轻的肝细胞中GC-C的大量表达表明cGMP在肝脏再生中发挥作用。

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