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非洲爪蟾5S RNA基因TFIIIA结合位点上游的额外基因内启动子元件。

Additional intragenic promoter elements of the Xenopus 5S RNA genes upstream from the TFIIIA-binding site.

作者信息

Keller H J, You Q M, Romaniuk P J, Gottesfeld J M

机构信息

Division of Developmental Biology, Medical Biology Institute, La Jolla, California 92037.

出版信息

Mol Cell Biol. 1990 Oct;10(10):5166-76. doi: 10.1128/mcb.10.10.5166-5176.1990.

Abstract

The major promoter element of the Xenopus laevis 5S RNA gene is located within the transcribed region of the gene and forms the binding site for the transcription initiation factor TFIIIA. We report an analysis of deletion and substitution mutations within the coding region of the major oocyte-type 5S gene of X. laevis. Our results differ from those of previous mutagenesis studies conducted on the somatic-type genes of Xenopus borealis and X. laevis. Transcription assays in whole oocyte S-150 extracts, with both oocyte- and somatic-type mutants, revealed additional promoter elements between the start site for transcription and the binding site for TFIIIA. These sequences regulate the efficiency of binding TFIIIC, a transcription factor required by the genes transcribed by RNA polymerase III containing intragenic promoters. Under TFIIIC-limiting conditions, the somatic-type gene had a 10-fold-higher affinity for TFIIIC than did the major oocyte-type 5S gene. One mutation in the oocyte-type gene (nucleotides +33 to +39) reduced TFIIIC affinity and transcriptional activity four- to fivefold. Differences in TFIIIC affinity between oocyte- and somatic-type genes may contribute to the differential transcription of these genes observed during Xenopus embryogenesis.

摘要

非洲爪蟾5S RNA基因的主要启动子元件位于该基因的转录区域内,并形成转录起始因子TFIIIA的结合位点。我们报告了对非洲爪蟾主要卵母细胞型5S基因编码区域内缺失和替换突变的分析。我们的结果与之前对北方爪蟾和非洲爪蟾体细胞型基因进行的诱变研究结果不同。在全卵母细胞S-150提取物中对卵母细胞型和体细胞型突变体进行转录分析,结果显示在转录起始位点和TFIIIA结合位点之间存在额外的启动子元件。这些序列调节TFIIIC的结合效率,TFIIIC是由包含基因内启动子的RNA聚合酶III转录的基因所需要的一种转录因子。在TFIIIC受限的条件下,体细胞型基因对TFIIIC的亲和力比主要卵母细胞型5S基因高10倍。卵母细胞型基因中的一个突变(核苷酸+33至+39)使TFIIIC亲和力和转录活性降低了四至五倍。卵母细胞型和体细胞型基因之间TFIIIC亲和力的差异可能导致在非洲爪蟾胚胎发育过程中观察到的这些基因转录差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d00a/361192/b4e1b843025a/molcellb00046-0152-a.jpg

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