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红系特异性δ-氨基-γ-酮戊酸合酶基因表达在红系血红素合成中的作用。

The role of the erythroid-specific delta-aminolevulinate synthase gene expression in erythroid heme synthesis.

作者信息

Meguro K, Igarashi K, Yamamoto M, Fujita H, Sassa S

机构信息

Rockefeller University, New York, NY 10021, USA.

出版信息

Blood. 1995 Aug 1;86(3):940-8.

PMID:7620186
Abstract

Using antisense technology, the effects of suppressed gene expression of the erythroid-specific delta-aminolevulinate (ALA) synthase (ALAS-E) on heme synthesis, expression of mRNAs encoding an erythroid-specific transcription factor NF-E2, other heme pathway enzymes, and beta-globin were examined in murine erythroleukemia (MEL) cells. In MEL cells in which an antisense ALAS-E RNA was expressed (AS clone), sense ALAS-E mRNA levels in both untreated and dimethylsulfoxide (DMSO)-treated cells were decreased compared with their respective controls. Heme synthesis in AS clones was decreased in proportion to the suppressed levels of ALAS-E mRNA. In addition, mRNAs for ALA dehydratase, porphobilinogen deaminase, ferrochelatase (FeC), and beta-globin were also decreased in AS clones. There was a strong correlation between the level of ALAS-E mRNA and most of the mRNAs of the heme pathway enzymes and beta-globin. There was a decrease in the mRNA level of p45, but not of mafK, which are the large and the small subunits of NF-E2, respectively, in AS clones. Treatment of AS cells with hemin and ALA in the presence of DMSO partially restored the suppressed mRNA levels for beta-globin and FeC and heme content, respectively. These findings thus indicate that heme formation, which is determined by the level of ALAS-E, plays an essential role on gene expression of many proteins necessary for erythroid development.

摘要

利用反义技术,在鼠红细胞白血病(MEL)细胞中研究了抑制红系特异性δ-氨基乙酰丙酸(ALA)合酶(ALAS-E)基因表达对血红素合成、编码红系特异性转录因子NF-E2的mRNA表达、其他血红素途径酶以及β-珠蛋白的影响。在表达反义ALAS-E RNA的MEL细胞(AS克隆)中,未处理和经二甲基亚砜(DMSO)处理的细胞中,有义ALAS-E mRNA水平均低于各自的对照细胞。AS克隆中的血红素合成与ALAS-E mRNA的抑制水平成比例下降。此外,AS克隆中ALA脱水酶、胆色素原脱氨酶、铁螯合酶(FeC)和β-珠蛋白的mRNA水平也降低。ALAS-E mRNA水平与血红素途径酶和β-珠蛋白的大多数mRNA水平之间存在很强的相关性。AS克隆中,NF-E2的大亚基p45的mRNA水平下降,但小亚基mafK的mRNA水平未下降。在DMSO存在的情况下,用血红素和ALA处理AS细胞,分别部分恢复了β-珠蛋白和FeC的mRNA抑制水平以及血红素含量。因此,这些发现表明,由ALAS-E水平决定的血红素形成在红系发育所需的许多蛋白质的基因表达中起着至关重要的作用。

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