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Expression of the X-CGD gene during induced differentiation of myeloid leukemia cell line HL-60.

机译:X-CGD基因在骨髓白血病细胞株HL-60诱导分化过程中的表达。

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摘要

The expression of the X-CGD gene, which encodes the heavy-chain subunit of the phagocyte cytochrome b, was studied during induced myeloid differentiation of HL-60 cells. Incubation of the cells with a combined regimen of retinoic acid and dimethyl formamide resulted in granulocytic morphological differentiation and acquisition of nitroblue tetrazolium reduction, a measure of superoxide generation. During the 5-day course of induced differentiation, the levels of X-CGD mRNA transcripts rose 13-fold, with a 2-fold increase detectable within 3 h of exposure to retinoic acid. Relative transcription rates for the X-CGD gene, determined by nuclear runoff, increased two- to eightfold after 24 to 72 h of induced differentiation. However, the greater change in X-CGD mRNA levels than that in transcription rates implies the involvement of posttranscriptional regulation as well. Fractionation by centrifugal elutriation into phases of the cell cycle showed expression of X-CGD transcripts predominantly in G1 cells before induction and in all phases of the cell cycle 24 h after induction. Thus the rapid increase in X-CGD expression in induced cells reflects the acquisition of functional competence and not the concomitant cessation of proliferation or shift in cell cycle distribution.
机译:在诱导HL-60细胞分化过程中,研究了编码吞噬细胞细胞色素b重链亚基的X-CGD基因的表达。用视黄酸和二甲基甲酰胺的组合方案孵育细胞会导致粒细胞形态分化和获得硝基蓝四唑还原,这是超氧化物生成的一种度量。在诱导分化的5天过程中,X-CGD mRNA转录水平上升了13倍,在暴露于视黄酸的3小时内可检测到2倍的增长。由核径流确定的X-CGD基因的相对转录速率在诱导分化24至72小时后增加了2至8倍。但是,X-CGD mRNA水平的变化比转录速率的变化大意味着也参与了转录后调控。通过离心淘析分成细胞周期各阶段,显示X-CGD转录本主要在诱导前在G1细胞中和诱导后24小时在细胞周期的所有阶段中表达。因此,诱导细胞中X-CGD表达的快速增加反映了功能能力的获得,而不是细胞周期分布中增殖或转移的同时停止。

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