首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Identification of regulatory sequences in the prelude sequences of an H2A histone gene by the study of specific deletion mutants in vivo.
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Identification of regulatory sequences in the prelude sequences of an H2A histone gene by the study of specific deletion mutants in vivo.

机译:通过体内特异性缺失突变体的研究鉴定H2A组蛋白基因前序序列中的调控序列。

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摘要

Conserved DNA sequence elements of putative regulatory functions were deleted from the prelude region of a sea urchin H2A histone gene. For this, the wild-type H2A gene of the 6-kilobase histone DNA repeat unit was replaced by various mutant H2A genes by cloning. The effects of the manipulation on H2A mRNA synthesis were studied by injection of the mutant DNAs into centrifuged Xenopus oocytes. The unmanipulated H2B gene residing within the same repeat unit provided a suitable internal control for these studies. Deletion of the T-A-T-A-A-A-T-A motif, once thought to be the functional equivalent of the bacterial Pribnow box, did not abolish transcription of the gene; instead, a number of novel mRNA 5' termini were generated. We argue that the T-A-T-A-A-A-T-A motif is a specificity element, a selector of eukaryotic gene transcription. Deletion of the "cap-sequence," 5' pyrimidine-C-A-T-T-C-purine 3' and most of the mRNA leader sequence did not abolish transcription but created yet another mRNA 5' terminus. In contrast to these deletions, which are both down-mutations, deletion of H2A gene-specific conserved DNA sequences upstream from the T-A-T-A-A-A-T-A motif enhanced mRNA synthesis. A hypothesis for the function of these DNA sequences as eukaryotic promoter elements is discussed.
机译:从海胆H2A组蛋白基因的前序区删除了假定的调节功能的保守DNA序列元件。为此,通过克隆将6-千碱基组蛋白DNA重复单元的野生型H2A基因替换为各种突变H2A基因。通过将突变的DNA注射到离心的爪蟾卵母细胞中研究了该操作对H2A mRNA合成的影响。驻留在同一重复单元中的未操纵的H2B基因为这些研究提供了合适的内部对照。 T-A-T-A-A-A-T-A基序的删除曾经被认为是细菌Pribnow box的功能等同物,但并没有消除该基因的转录。相反,产生了许多新颖的mRNA 5'末端。我们认为T-A-T-A-A-A-T-A基序是一种特异性元件,是真核基因转录的选择器。删除“帽序列”,5'嘧啶-C-A-T-T-C-嘌呤3'和大多数mRNA前导序列并没有消除转录,而是产生了另一个mRNA 5'末端。与这两个都是突变的缺失相反,从T-A-T-A-A-A-T-A基序上游的H2A基因特异性保守DNA序列的缺失增强了mRNA的合成。讨论了这些DNA序列作为真核启动子元件功能的假设。

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