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胚胎癌P19细胞持续产生促红细胞生成素,但以氧依赖的方式表达乳酸脱氢酶。

Embryonal carcinoma P19 cells produce erythropoietin constitutively but express lactate dehydrogenase in an oxygen-dependent manner.

作者信息

Kambe T, Tada J, Chikuma M, Masuda S, Nagao M, Tsuchiya T, Ratcliffe P J, Sasaki R

机构信息

Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Kyoto, Japan.

出版信息

Blood. 1998 Feb 15;91(4):1185-95.

PMID:9454748
Abstract

Embryonic stem cells and embryonal carcinoma P19 cells produce erythropoietin (Epo) in an oxygen-independent manner, although lactate dehydrogenase A (LDHA) is hypoxia-inducible. To explore this paradox, we studied the operation of cis-acting sequences from these genes in P19 and Hep3B cells. The Epo gene promoter and 3' enhancer from P19 cells conveyed hypoxia-inducible responses in Hep3B cells but not in P19 cells. Together with DNA sequencing and the normal transcription start site of P19 Epo gene, this excluded the possibility that the noninducibility of Epo gene in P19 cells was due to mutation in these sequences or unusual initiation of transcription. In contrast, reporter constructs containing LDHA enhancer and promoter were hypoxia inducible in P19 and Hep3B cells, and mutation of a hypoxia- inducible factor 1 (HIF-1) binding site abolished the hypoxic inducibility in both cells, indicating that HIF-1 activation operates normally in P19 cells. Neither forced expression of hepatocyte nuclear factor 4 in P19 cells nor deletion of its binding site from the Epo enhancer was effective in restoring Epo enhancer function. P19 cells may lack an unidentified regulator(s) required for interaction of the Epo enhancer with Epo and LDHA promoters.

摘要

胚胎干细胞和胚胎癌P19细胞以不依赖氧气的方式产生促红细胞生成素(Epo),尽管乳酸脱氢酶A(LDHA)是缺氧诱导型的。为了探究这一矛盾现象,我们研究了这些基因的顺式作用序列在P19和Hep3B细胞中的运作情况。P19细胞的Epo基因启动子和3'增强子在Hep3B细胞中传递缺氧诱导反应,但在P19细胞中则不然。结合DNA测序以及P19 Epo基因的正常转录起始位点,这排除了P19细胞中Epo基因不可诱导是由于这些序列发生突变或转录起始异常的可能性。相比之下,含有LDHA增强子和启动子的报告基因构建体在P19和Hep3B细胞中是缺氧诱导型的,缺氧诱导因子1(HIF-1)结合位点的突变消除了这两种细胞中的缺氧诱导性,表明HIF-1激活在P19细胞中正常运作。在P19细胞中强制表达肝细胞核因子4或从Epo增强子中删除其结合位点,均无法有效恢复Epo增强子功能。P19细胞可能缺乏Epo增强子与Epo和LDHA启动子相互作用所需的一种未知调节因子。

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