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髓系白血病细胞中转铁蛋白受体表达的调控。

Regulation of transferrin receptor expression in myeloid leukemia cells.

作者信息

Taetle R, Ralph S, Smedsrud S, Trowbridge I

出版信息

Blood. 1987 Sep;70(3):852-9.

PMID:3476165
Abstract

Surface transferrin (Tf) receptors are displayed by cultured human hematopoietic cells and provide Fe required for cell growth. Cell cycle status, cell density in culture, exposure to Fe, and differentiation alter Tf receptor display by myeloid leukemia cells. To investigate mechanisms controlling Tf receptor expression, rates of receptor synthesis and steady-state mRNA levels were measured in HL60 promyelocytic cells grown in serum and serum-free media or after differentiation in response to dimethylsulfoxide (DMSO). Although surface binding sites were unchanged during the first three days in culture with serum or in serum-free media containing Tf, by the third day, rates of receptor biosynthesis and steady-state mRNA levels declined, consistent with cell density-dependent, receptor regulation. Cells grown with soluble Fe instead of Tf showed reduced Tf binding sites, rates of receptor synthesis, and Tf receptor mRNA. When cells grown with Fe were subcultured, Tf receptor mRNA levels increased within 15 minutes and peaked by 24 hours. This was followed by a decline in receptor and gene expression so that by three days cells grown in the presence of Fe expressed approximately four times fewer receptors and had half the rates of Tf receptor synthesis and mRNA levels of cells grown in serum or Tf. Cells treated with DMSO showed a rapid decline in surface receptors, receptor synthesis, and steady-state mRNA levels. Modulation of Tf receptor expression was not due to redistribution between the cell surface and an internal receptor pool. In each instance, concurrent assessment of N-ras transcripts showed that changes in Tf receptor mRNA levels were not due to generalized alterations in protein synthesis. Exposure of cells grown in Fe or treated with DMSO to cycloheximide did not alter Tf receptor mRNA levels, thereby suggesting that receptor expression was not regulated by posttranscriptional processes dependent on protein synthesis. Actinomycin D inhibition of Tf receptor mRNA was compatible with a transcript half-life of approximately 2.2 hours. Nuclear transcription studies showed reduced rates of Tf receptor transcription after culture with Fe or exposure to DMSO. The present studies show complex patterns of Tf receptor gene regulation in cultured myeloid leukemia cells and demonstrate that transcriptional regulation is a major mechanism controlling Tf receptor gene expression in response to Fe and differentiation.

摘要

培养的人造血细胞可表达表面转铁蛋白(Tf)受体,并提供细胞生长所需的铁。细胞周期状态、培养中的细胞密度、铁暴露以及分化会改变髓系白血病细胞的Tf受体表达。为了研究控制Tf受体表达的机制,我们在血清和无血清培养基中生长的HL60早幼粒细胞中,或在对二甲基亚砜(DMSO)反应分化后,测量了受体合成速率和稳态mRNA水平。尽管在含有血清的培养基中培养的头三天或在含有Tf的无血清培养基中,表面结合位点没有变化,但到第三天,受体生物合成速率和稳态mRNA水平下降,这与细胞密度依赖性受体调节一致。用可溶性铁而非Tf培养的细胞显示Tf结合位点、受体合成速率和Tf受体mRNA减少。当用铁培养的细胞传代培养时,Tf受体mRNA水平在15分钟内升高,并在24小时达到峰值。随后受体和基因表达下降,因此到第三天,在铁存在下培养的细胞表达的受体大约少四倍,Tf受体合成速率和mRNA水平是在血清或Tf中培养的细胞的一半。用DMSO处理的细胞表面受体、受体合成和稳态mRNA水平迅速下降。Tf受体表达的调节不是由于细胞表面和内部受体池之间的重新分布。在每种情况下,同时评估N-ras转录本表明,Tf受体mRNA水平的变化不是由于蛋白质合成的普遍改变。在铁中生长或用DMSO处理的细胞暴露于环己酰亚胺不会改变Tf受体mRNA水平,因此表明受体表达不受依赖蛋白质合成的转录后过程调节。放线菌素D对Tf受体mRNA的抑制与转录本半衰期约2.2小时一致。核转录研究表明,用铁培养或暴露于DMSO后,Tf受体转录速率降低。本研究显示了培养的髓系白血病细胞中Tf受体基因调节的复杂模式,并证明转录调节是响应铁和分化控制Tf受体基因表达的主要机制。

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