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首页> 外文期刊>American Journal of Physiology >Regulation of Kruppel-like factor 4, 9, and 13 genes and the steroidogenic genes LDLR, StAR, and CYP11A in ovarian granulosa cells
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Regulation of Kruppel-like factor 4, 9, and 13 genes and the steroidogenic genes LDLR, StAR, and CYP11A in ovarian granulosa cells

机译:卵巢颗粒细胞中Kruppel样因子4、9和13基因以及类固醇生成基因LDLR,StAR和CYP11A的调节

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摘要

First published December 4, 2007; doi: 10.1152/ajpendo.00480.2007.-Kruppel-like factors (KLFs) are important SpMike eukaryotic transcriptional proteins. The LDLR, StAR, and CYP11A genes exhibit GC-rich Spl-like sites, which have the potential to bind KLFs in multiprotein complexes. We now report that KLF4, KLF9, and KLF13 transcripts are expressed in and regulate ovarian cells. KLF4 and 13, but not KLF9, niRNA expression was induced and then repressed over time (P < 0.001)- Combined LH and IGF-I stimulation increased KLF4 mRNA at 2 h (P < 0.01), whereas LH decreased KLF13 mRNA at 6 h (P < 0.05), and IGF-I reduced KLF13 at 24 h (P < 0.01) compared with untreated control. KLF9 was not regulated by either hormone. Transient transfection of KLF4, KLF9, and KLF13 suppressed LDLR/luc, StAR/luc, and CYPllA/luc by 80-90% (P < 0.001). Histone-deacetylase (HDAC) inhibitors stimulated LDLR/luc five- to sixfold and StAR/luc and CYPllA/luc activity twofold (P < 0.001) and partially reversed suppression by all three KLFs (P < 0.001). Deletion of the zinc finger domain of KLF13 abrogated repression of LDLR/ Inc. Lentiviral overexpression of the KLF13 gene suppressed LDLR mRNA (P < 0.001) and CYP11A mRNA (P = 0.003) but increased StAR mRNA (P = 0.007). Collectively, these data suggest that KLFs may recruit inhibitory complexes containing HDAC compressors, thereby repressing LDLR and CYP11A transcription. Conversely, KLF13 may recruit unknown coactivators or stabilize StAR mRNA, thereby explaining enhancement of in situ StAR gene expression. These data introduce new potent gonadal transregulators of genes encoding proteins that mediate sterol uptake and steroid biosynthesis.
机译:首次发布于2007年12月4日; doi:10.1152 / ajpendo.00480.2007.-Kruppel样因子(KLFs)是重要的SpMike真核转录蛋白。 LDLR,StAR和CYP11A基因表现出富含GC的Spl样位点,具有与多蛋白复合物中的KLF结合的潜力。现在,我们报告KLF4,KLF9和KLF13转录本在卵巢细胞中表达并调节卵巢细胞。诱导KLF4和13,但不诱导KLF9,但随着时间的流逝而抑制它们的表达(P <0.001)-LH和IGF-I联合刺激在2 h时增加KLF4 mRNA(P <0.01),而LH在6 h时降低KLF13 mRNA (P <0.05),与未处理的对照组相比,IGF-I在24 h时降低了KLF13(P <0.01)。 KLF9不受任何一种激素的调节。 KLF4,KLF9和KLF13的瞬时转染将LDLR / luc,StAR / luc和CYPllA / luc抑制了80-90%(P <0.001)。组蛋白脱乙酰基酶(HDAC)抑制剂可将LDLR / luc的活性提高5到6倍,并将StAR / luc和CYPllA / luc的活性提高2倍(P <0.001),并且所有三个KLF的抑制作用均会部分逆转(P <0.001)。 KLF13锌指结构域的删除消除了LDLR / Inc.的抑制。慢病毒KLF13基因的过表达抑制LDLR mRNA(P <0.001)和CYP11A mRNA(P = 0.003),但StAR mRNA增加(P = 0.007)。总体而言,这些数据表明,KLF可能募集含有HDAC压缩机的抑制性复合物,从而抑制LDLR和CYP11A转录。相反,KLF13可能募集未知的共激活因子或稳定StAR mRNA,从而解释了原位StAR基因表达的增强。这些数据介绍了新的强效性腺调控因子,其基因编码介导固醇吸收和类固醇生物合成的蛋白质。

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