首页> 外文OA文献 >Regulation of transferrin receptor expression on human leukemic cells during proliferation and induction of differentiation. Effects of gallium and dimethylsulfoxide.
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Regulation of transferrin receptor expression on human leukemic cells during proliferation and induction of differentiation. Effects of gallium and dimethylsulfoxide.

机译:调节人白血病细胞增殖和诱导分化过程中转铁蛋白受体的表达。镓和二甲基亚砜的影响。

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摘要

The association of transferrin receptor expression with cellular proliferation has been studied extensively, but a number of events have not been defined. We therefore assayed receptor on promyelocytic leukemia (HL-60) cells at early times after exposure to a stimulus for proliferation (subculture), as well as agents that either induce differentiation (dimethylsulfoxide [DMSO] ) or inhibit iron uptake (transferrin-gallium). Within 4 h after subculture, we found that a significant increase in total cellular immunoreactive receptor occurred that preceded by 8 h the increase in cell-surface transferrin binding. Automated fluorocytometric analysis of cells in an immunofluorescent assay indicated that increased surface receptor density appeared on cells in the S, G2, and M phases of the cell cycle. DMSO-treated cells proliferated at the same rate as untreated (control) cells for the first 72 h, but as early as 12 h after treatment transferrin receptor was significantly decreased (65% of control cells). Further decreases occurred at later time points until transferrin receptor was undetectable after 7 d, when proliferation had ceased, cells were arrested in G1 phase of the cell cycle, and myeloid differentiation occurred. After exposure to transferrin-gallium, proliferation ceased, but cells exhibited increased surface receptor and were arrested at S phase of the cell cycle without associated myeloid differentiation. We conclude that events preceding cell division provide the regulatory stimulus for the synthesis and subsequent appearance of the transferrin receptor on the cell surface. Additionally, decreased receptor expression may be important in causing cessation of proliferation and/or differentiation. Finally, the way in which gallium salts are currently being investigated as chemotherapeutic agents should be reevaluated in light of our findings concerning transferrin-gallium effects on cellular proliferation.
机译:已经广泛研究了转铁蛋白受体表达与细胞增殖的关系,但尚未定义许多事件。因此,我们在暴露于刺激的增殖(继代培养)后的早期就检测了早幼粒细胞白血病(HL-60)细胞的受体,以及诱导分化(二甲基亚砜[DMSO])或抑制铁吸收(运铁蛋白-镓)的药物。 。传代培养后4小时内,我们发现总细胞免疫反应受体的显着增加发生在8小时之前,细胞表面转铁蛋白结合的增加。在免疫荧光分析中对细胞进行的自动荧光细胞分析表明,在细胞周期的S,G2和M期,表面受体密度增加。在最初的72小时内,用DMSO处理的细胞以与未处理(对照)细胞相同的速率增殖,但最早在处理后12小时,转铁蛋白受体显着降低(占对照细胞的65%)。在随后的时间点进一步减少,直到7 d后无法检测到转铁蛋白受体,此时增殖停止,细胞停滞在细胞周期的G1期,并发生了髓样分化。暴露于运铁蛋白-镓后,增殖停止,但细胞显示出增加的表面受体,并停滞在细胞周期的S期,而没有相关的髓样分化。我们得出结论,细胞分裂之前的事件为转铁蛋白受体的合成和随后在细胞表面的出现提供了调节刺激。另外,减少的受体表达对于引起增殖和/或分化的停止可能是重要的。最后,应根据我们有关运铁蛋白-镓对细胞增殖的影响的发现,重新评估目前正在研究镓盐作为化学治疗剂的方式。

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