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肝细胞-肝癌细胞杂种。胆汁酸合成的特性与证明。

Hepatocyte-hepatoma cell hybrids. Characterization and demonstration of bile acid synthesis.

作者信息

Polokoff M A, Everson G T

出版信息

J Biol Chem. 1986 Mar 25;261(9):4085-9.

PMID:3949804
Abstract

Hybrids were created by fusion of primary rat hepatocytes with well-differentiated Reuber H35 rat hepatoma cells. Seventeen hybrids were screened for bile acid synthesis using [26-14C]cholesterol. As [26-14C]cholesterol was converted to bile acid, 14CO2 was released. Using this assay, four hybrids (8B, 12C, 13C, and 13D) were identified which synthesized bile acid. These four hybrids also incorporated [14C]taurine into bile acid. Bile acids were identified by capillary gas chromatography/mass spectrometry, and their rates of synthesis were quantitated by isotope dilution. Reuber H35 cells synthesized little or no bile acid. However, hybrids 8B, 12C, 13C, and 13D synthesized chenodeoxycholic acid, alpha-muricholic acid, and cholic acid and secreted them into the media. The rates of synthesis of individual bile acids varied among these hybrids. For example, the relative percentage of cholic acid ranged from 11.1% (hybrid 8B) to 50.4% (hybrid 13C). The bile acids synthesized and secreted by the most active hybrid, 12C, were greater than 93% conjugated. In summary, hybrids were created that retain the capacity to synthesize, conjugate, and secrete three major rat bile acid species. Such hybrids are unique model systems that will allow the study of the biochemical and genetic regulation of bile acid synthesis.

摘要

通过将原代大鼠肝细胞与高度分化的鲁伯H35大鼠肝癌细胞融合来创建杂种细胞。使用[26-14C]胆固醇对17个杂种细胞进行胆汁酸合成筛选。随着[26-14C]胆固醇转化为胆汁酸,会释放出14CO2。利用该检测方法,鉴定出四个能够合成胆汁酸的杂种细胞(8B、12C、13C和13D)。这四个杂种细胞还将[14C]牛磺酸掺入胆汁酸中。通过毛细管气相色谱/质谱法鉴定胆汁酸,并通过同位素稀释法定量其合成速率。鲁伯H35细胞合成很少或不合成胆汁酸。然而,杂种细胞8B、12C、13C和13D合成鹅去氧胆酸、α-鼠胆酸和胆酸,并将它们分泌到培养基中。这些杂种细胞中各胆汁酸的合成速率各不相同。例如,胆酸的相对百分比范围为11.1%(杂种细胞8B)至50.4%(杂种细胞13C)。活性最高的杂种细胞12C合成并分泌的胆汁酸中,超过93%是结合型的。总之,创建的杂种细胞保留了合成、结合和分泌三种主要大鼠胆汁酸种类的能力。此类杂种细胞是独特的模型系统,将有助于研究胆汁酸合成的生化和遗传调控。

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