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大豆热激基因的 DNA 序列分析及可能的调控启动子元件的鉴定。

The DNA sequence analysis of soybean heat-shock genes and identification of possible regulatory promoter elements.

机构信息

Universität Bielefeld, Fakultät für Biologie (Genetik), D-4800 Bielefeld 1, FRG.

出版信息

EMBO J. 1984 Nov;3(11):2491-7. doi: 10.1002/j.1460-2075.1984.tb02161.x.

DOI:10.1002/j.1460-2075.1984.tb02161.x
PMID:16453563
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC557717/
Abstract

The soybean possesses a gene family encoding the major low mol. wt. heat-shock proteins of 15-18 kd. We have determined the primary DNA sequences of two of the genes, both located on the same subgenomic DNA fragment. The protein coding regions are characterized by long uninterrupted open reading frames and by sequence homology of 92% and 100% with a heat-shock specific cDNA. One protein sequence deduced from the completely cloned gene hs6871 is composed of 153 amino acids with a total mol. wt. of 17.3 kd; the other protein is a truncated polypeptide containing 73 amino acids at the carboxy-terminal end of an incompletely cloned heat-shock gene designated hs6834. Investigations of the hydrophilic/hydrophobic characteristics of the polypeptides revealed a conservation of structural features between heat-shock proteins from soybean, Caenorhabditis and Drosophila and mammalian lens alpha-crystallin. The 5' end of the soybean heat-shock gene hs6871 was mapped by S1 nuclease at a position which is 100 nucleotides upstream from the translation start codon and 25 nucleotides downstream from a TATA-box sequence. Six other potential promoter elements which are homologous to the Drosophila heat-shock consensus sequence CT-GAA-TTC-AG-, are present within 150 nucleotides upstream from the TATA-box. The possible functions of these promoter elements in transcriptional regulation of expression of soybean heat-shock gene are discussed.

摘要

大豆拥有一个基因家族,该家族编码分子量为 15-18kD 的主要低分子量热休克蛋白。我们已经确定了两个基因的初级 DNA 序列,这两个基因都位于同一个亚基因组 DNA 片段上。蛋白质编码区的特征是长的连续开放阅读框,以及与热休克特异性 cDNA 的 92%和 100%的序列同源性。从完全克隆的基因 hs6871 推断出的蛋白质序列由 153 个氨基酸组成,总分子量为 17.3kD;另一种蛋白质是一种截断的多肽,在不完全克隆的热休克基因 hs6834 的羧基末端含有 73 个氨基酸。对多肽的亲水/疏水性特征的研究表明,大豆、秀丽隐杆线虫和果蝇以及哺乳动物晶状体α-晶体蛋白的热休克蛋白之间存在结构特征的保守性。大豆热休克基因 hs6871 的 5'端通过 S1 核酸酶定位,其位置在翻译起始密码子上游 100 个核苷酸处,在 TATA 盒序列下游 25 个核苷酸处。TATA 盒上游 150 个核苷酸内存在另外六个与果蝇热休克共有序列 CT-GAA-TTC-AG-同源的潜在启动子元件。这些启动子元件在大豆热休克基因表达的转录调控中的可能功能将进行讨论。

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In Vitro Interaction of Nuclear Proteins with the Promoter of Soybean Heat Shock Gene Gmhsp17.5E.大豆热激基因 Gmhsp17.5E 启动子的核蛋白体外相互作用。
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Circadian Control of the Accumulation of mRNAs for Light- and Heat-Inducible Chloroplast Proteins in Pea (Pisum sativum L.).豌豆(Pisum sativum L.)中光诱导和热诱导叶绿体蛋白的 mRNA 积累的昼夜节律控制。
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