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将原肠胚细胞核提取物注射到非洲爪蟾卵母细胞后,对海胆早期和晚期H2B组蛋白基因表达的差异刺激。

Differential stimulation of sea urchin early and late H2B histone gene expression by a gastrula nuclear extract after injection into Xenopus laevis oocytes.

作者信息

Maxson R, Ito M, Balcells S, Thayer M, French M, Lee F, Etkin L

机构信息

Department of Biochemistry, University of Southern California, Medical School, Los Angeles 90033.

出版信息

Mol Cell Biol. 1988 Mar;8(3):1236-46. doi: 10.1128/mcb.8.3.1236-1246.1988.

Abstract

Sea urchin early histone genes are active in preblastula embryos; late histone genes are maximally expressed during subsequent stages of embryogenesis. We used the Xenopus laevis oocyte to assay for trans-acting factors involved in this differential regulation. Sea urchin nuclear proteins were prepared by extracting gastrula-stage chromatin successively with 0.45, 1, and 2 M NaCl. We injected three fractions into oocytes along with plasmids bearing sea urchin early and late H2b histone genes. While neither the 0 to 0.45 M nor the 1 to 2 M salt fraction affected H2b gene expression, the 0.45 to 1 M salt fraction stimulated early and late H2b mRNA levels significantly. Late H2b gene expression was stimulated preferentially when the early and late genes were coinjected into the same oocytes. This extract did not stimulate the accumulation of transcripts of injected herpesvirus thymidine kinase genes or of the sea urchin Spec 1 gene, suggesting that the stimulatory activity is not a general transcription factor. We localized the DNA sequence required for the stimulatory effect to a region of the late H2b gene located between -43 and +62 relative to the transcription start site. A component of the 0.45 to 1 M salt wash fraction specifically bound to the 105-base-pair late gene DNA sequence and to the corresponding early gene fragment. The abundance of this binding activity decreased on a per genome basis during early development of the sea urchin.

摘要

海胆早期组蛋白基因在囊胚前期胚胎中活跃;晚期组蛋白基因在胚胎发育的后续阶段表达量最高。我们利用非洲爪蟾卵母细胞来检测参与这种差异调控的反式作用因子。通过用0.45M、1M和2M的NaCl依次提取原肠胚阶段的染色质来制备海胆核蛋白。我们将三个组分与携带海胆早期和晚期H2b组蛋白基因的质粒一起注入卵母细胞。虽然0至0.45M和1至2M盐组分都不影响H2b基因表达,但0.45至1M盐组分显著刺激了早期和晚期H2b mRNA水平。当早期和晚期基因共注入同一个卵母细胞时,晚期H2b基因表达受到的刺激更为明显。该提取物不会刺激注入的疱疹病毒胸苷激酶基因或海胆Spec 1基因转录本的积累,这表明这种刺激活性不是一种通用转录因子。我们将刺激作用所需的DNA序列定位到晚期H2b基因相对于转录起始位点-43至+62之间的区域。0.45至1M盐洗脱组分中的一种成分特异性结合到105碱基对的晚期基因DNA序列以及相应的早期基因片段上。在海胆早期发育过程中,这种结合活性在每个基因组中的丰度会下降。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07d2/363268/1a0ec6564227/molcellb00063-0238-a.jpg

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