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Positive regulation of the Drosophila melanogaster G6PD gene by a transposable element: its structure and function.

Positive regulation of the Drosophila melanogaster G6PD gene by a transposable element: its structure and function.
转座元件对果蝇 G6PD 基因的正调控:其结构和功能。
批准号:
63540499
负责人:
HORI Hiroshi
金额:
$1.22万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for General Scientific Research (C)
财政年份:
1988
资助国家:
日本
项目状态:
已结题
起止时间:
1988 至 1989

项目摘要

项目成果

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中文摘要
翻译
3株高G6 PD活性的D.已在实验室原种中发现的黑腹果蝇的特征在于与G6 PD基因座相关的两个插入序列;一个(Ins 1)仅存在于外显子I的5 ′端,另一个位于内含子内。本项目的目的是研究Ins 1序列的结构和功能。结果表明:(1)Ins 1序列由一个核心序列和一个KP和KP'元件组成,其中G6 PD活性高的序列可能是核心序列;(2)核心序列的克隆和测序数据表明,这是另一种类型的缺陷P元件(p25.1的P元件中从碱基206到碱基2503的内部序列被删除);(三)跨越第205个和第2504个碱基的连接处的序列对于这种特定类型的P元件是独特的,并且可能能够形成一个互补序列。(4)在Canton S和突变体胚胎的细胞核中存在一种与核心序列特异性结合的蛋白质,(5)核心序列具有一对DNA酶超敏感位点;(6)G6 PD mRNA的转录起始位点和长度在野生型和突变型中没有差异。结论是,在G6 PD编码结构域之前插入特定类型的缺陷P元件为G6 PD基因提供了一个可能具有调节功能的核蛋白可以结合的位点,因此,在不干扰正常转录机制的情况下,导致转录的加速。
英文摘要
Three high G6PD-activity mutants of D. melanogaster which have been found in a laboratory stock are characterized by two insertion sequences associated with the G6PD locus; one (Ins 1) is present just 5' to exon I and the other resides within an intron. The aim of the present project was to study the structure and function of the Ins 1 sequence. The following results were obtained: (1) The Ins 1 sequence consists of a core sequence flanked by a KP and KP' elements, and the sequence responsible for high G6PD activity may be the core sequence;(2) Cloning and sequencing data of the core sequence showed that this is another type of defective P elements(the internal sequence ranging from base 206 to base 2503 in the P element of p 25.1 is deleted); (3) The sequence spanning the junction of the 205th and the 2504th bases is unique to this particular type of P elements and may be capable of forming a palindrome in its central portion; (4) There is a protein in the nuclei of Canton S and mutant embryos that specifically binds to the core sequence; (5) The core sequence has a pair of DNase hypersensitive sites; (6) The transcription start site and the length of G6PD mRNA do not differ in wild-type and mutant stocks.Based on these findings, it was concluded that insertion of a particular type of defective P elements in front of the G6PD coding domain provides the G6PD gene with a site to which a nuclear protein probably of regulatory function can bind, and hence, without disturbing the normal transcription machinery, results in the acceleration of transcription.
期刊论文(11)
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会议论文
Ito,H.: Sent to Biochemical Genetics.
Ito,H.:发送到生化遗传学。
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共 11 条
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      2001
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