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非洲爪蟾发育过程中MARCKS基因激活的机制。

Mechanisms of MARCKS gene activation during Xenopus development.

作者信息

Shi Y, Sullivan S K, Pitterle D M, Kennington E A, Graff J M, Blackshear P J

机构信息

Howard Hughes Medical Institute and the Section of Diabetes and Metabolism, Division of Endocrinology, Metabolism and Nutrition, Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Biol Chem. 1997 Nov 14;272(46):29290-300. doi: 10.1074/jbc.272.46.29290.

Abstract

The myristoylated alanine-rich protein kinase C substrate (MARCKS) is a high affinity cellular substrate for protein kinase C. The MARCKS gene is under multiple modes of transcriptional control, including cytokine- and transformation-dependent, cell-specific, and developmental regulation. This study evaluated the transcriptional control of MARCKS gene expression during early development of Xenopus laevis. Xenopus MARCKS was highly conserved with its mammalian and avian homologues; its mRNA and protein were abundant in the maternal pool and increased after the mid-blastula transition (MBT). The Xenopus MARCKS gene was similar to those of other species, except that a second intron interrupted the 5'- untranslated region. By transiently transfecting XTC-2 cells and microinjecting Xenopus embryos with reporter gene constructs containing serial deletions of 5'-flanking MARCKS sequences, we identified a 124-base pair minimal promoter that was critical for promoter activity. Developmental gel shift assays revealed that a CBF/NF-Y/CP-1-like factor and an Sp1-like factor bound to this region in a manner correlating with the onset of Xenopus MARCKS transcription at MBT. Mutations in the promoter that abolished binding of these two factors also completely inhibited transcriptional activation of the MARCKS gene at MBT. The binding sites for these two factors are highly conserved in the human and mouse MARCKS promoters, suggesting that these elements might also regulate MARCKS transcription in other species. These studies not only increase our knowledge of the transcriptional regulation of the MARCKS genes but also have implications for the mechanisms responsible for zygotic activation of the Xenopus genome at MBT.

摘要

豆蔻酰化富含丙氨酸的蛋白激酶C底物(MARCKS)是蛋白激酶C的一种高亲和力细胞底物。MARCKS基因受多种转录调控模式的影响,包括细胞因子和转化依赖性、细胞特异性以及发育调控。本研究评估了非洲爪蟾早期发育过程中MARCKS基因表达的转录调控。非洲爪蟾的MARCKS与其哺乳动物和鸟类同源物高度保守;其mRNA和蛋白质在母源池中丰富,并在囊胚中期转变(MBT)后增加。非洲爪蟾的MARCKS基因与其他物种的相似,只是第二个内含子中断了5'-非翻译区。通过瞬时转染XTC-2细胞并向非洲爪蟾胚胎显微注射含有MARCKS 5'-侧翼序列系列缺失的报告基因构建体,我们鉴定出一个对启动子活性至关重要的124个碱基对的最小启动子。发育凝胶迁移分析表明,一种CBF/NF-Y/CP-1样因子和一种Sp1样因子以与非洲爪蟾MARCKS在MBT时转录起始相关的方式结合到该区域。启动子中消除这两种因子结合的突变也完全抑制了MBT时MARCKS基因的转录激活。这两种因子的结合位点在人类和小鼠的MARCKS启动子中高度保守,表明这些元件可能也在其他物种中调节MARCKS的转录。这些研究不仅增加了我们对MARCKS基因转录调控的了解,也对MBT时非洲爪蟾基因组合子激活的机制有启示意义。

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