Deficient heme and globin synthesis in embryonic stem cells lacking the erythroid-specific delta-aminolevulinate synthase gene.

نویسندگان

  • H Harigae
  • N Suwabe
  • P H Weinstock
  • M Nagai
  • H Fujita
  • M Yamamoto
  • S Sassa
چکیده

The erythroid-specific isoform of delta-aminolevulinate synthase (ALAS-E) catalyzes the first step of heme biosynthesis in erythroid cells, and ALAS-E gene mutations are known to be responsible for x-linked sideroblastic anemia. To study the role of ALAS-E in erythroid development, we prepared mouse embryonic stem (ES) cells carrying a disrupted ALAS-E gene and examined the effect of the lack of ALAS-E gene expression on erythroid differentiation. We found that mRNAs for erythroid transcription factors and TER119-positive cells were increased similarly both in the wild-type and mutant cells. In contrast, heme content, the number of benzidine-positive cells, adult globin protein, and mRNA for beta-major globin were significantly decreased in the mutant cells. These results were confirmed using another ES differentiation system in vitro and suggest that ALAS-E expression, hence heme supply, is critical for the late stage of erythroid cell differentiation, which involves hemoglobin synthesis.

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منابع مشابه

Deficient Heme and Globin Synthesis in Embryonic Stem Cells Lacking the Erythroid-Specific d-Aminolevulinate Synthase Gene

The erythroid-specific isoform of d-aminolevulinate synthase (ALAS-E) catalyzes the first step of heme biosynthesis in erythroid cells, and ALAS-E gene mutations are known to be responsible for x-linked sideroblastic anemia. To study the role of ALAS-E in erythroid development, we prepared mouse embryonic stem (ES) cells carrying a disrupted ALAS-E gene and examined the effect of the lack of AL...

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

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 ...

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Aberrant iron accumulation and oxidized status of erythroid-specific delta-aminolevulinate synthase (ALAS2)-deficient definitive erythroblasts.

Alas2 encodes the erythroid-specific delta-aminolevulinate synthase (ALAS2 or ALAS-E), the first enzyme in heme biosynthesis in erythroid cells. Mice with the Alas2-null phenotype showed massive cytoplasmic, but not mitochondrial, iron accumulation in their primitive erythroblasts. Because these animals died by day 11.5 in utero, studies of iron metabolism in definitive erythroblasts were not p...

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Structure and regulation of the chicken erythroid delta-aminolevulinate synthase gene.

Erythroid cells regulate heme biosynthesis in a manner that is distinct from all other cell types. While heme negatively regulates the synthesis of the housekeeping delta-aminolevulinate synthase (ALAS-N) in all non-erythroid cells, the expression of an erythroid-specific isozyme (ALAS-E) is developmentally regulated in red blood cells. As a first step towards understanding the molecular basis ...

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Control of hemoglobin synthesis in the cultured chick blastoderm by delta-aminolevulinic acid synthetase: increase in the rate of hemoglobin formation with delta-aminolevulinic acid.

The early, de-embryonated chick blastoderm, cultured in vitro, closely simulates a phased culture of erythroid cells. This fact permits the study of hemoglobin synthesis from colorless erythroblast precursor cells to fully hemoglobinated erythrocytes. When b-aminolevulinic acid is added to colorless blastoderms, thereby by-passing &aminolevulinic acid synthetase, copious amounts of porphyrins, ...

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عنوان ژورنال:
  • Blood

دوره 91 3  شماره 

صفحات  -

تاریخ انتشار 1998