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急性髓性白血病母细胞c-kit的功能性表达通过肿瘤坏死因子-α经一种不稳定蛋白的转录后mRNA稳定作用而增强。

Functional expression of c-kit by acute myelogenous leukemia blasts is enhanced by tumor necrosis factor-alpha through posttranscriptional mRNA stabilization by a labile protein.

作者信息

Brach M A, Bühring H J, Gruss H J, Ashman L K, Ludwig W D, Mertelsmann R H, Herrmann F

机构信息

Department of Internal Medicine I, University of Freiburg Medical Center, Germany.

出版信息

Blood. 1992 Sep 1;80(5):1224-30.

PMID:1381241
Abstract

The c-kit proto-oncogene encodes a transmembrane glycoprotein identical to the receptor for the recently cloned stem cell factor (SCF). The present study examines constitutive synthesis of transcripts in primary acute myelogenous leukemia (AML) blasts and the effects of recombinant human tumor necrosis factor (TNF)-alpha on c-kit mRNA expression in these cells. The c-kit transcripts were detectable at low levels in 10 of 10 different AML samples investigated. TNF treatment of AML cells was associated with enhanced c-kit mRNA expression in all specimens. Nuclear run-on transcription assays indicated that the c-kit gene was transcriptionally active in all leukemias examined and the rate of transcription was unaffected by exposure to TNF, suggesting posttranscriptional control mechanisms of c-kit mRNA accumulation. In the absence of TNF, the half-life of c-kit transcripts was 2 to 3 hours, while in TNF-treated AML cells, c-kit half-life was found to be 5 to 9 hours. Inhibition of protein synthesis reduced TNF-induced c-kit mRNA expression by Northern blot analysis, but did not affect the rate of c-kit gene transcription. In the presence of inhibition of protein synthesis, the half-life of c-kit transcripts in TNF-induced leukemia cells decreased to 2 to 4 hours. These findings indicate that levels of c-kit mRNA are controlled by a labile protein that is involved in TNF-mediated stabilization of c-kit transcripts. The effects of TNF-alpha also extended to the protein level in that TNF-alpha treatment of primary AMLs was associated with enhanced surface expression of the SCF receptor by some of these cells. While exogenous SCF induced clonogenic growth of all primary AML samples investigated, TNF-alpha failed to stimulate leukemic cells to proliferate. However, the combination of SCF and TNF-alpha resulted in synergistic growth stimulation in seven of nine different AML specimens investigated. The finding of transmodulation of the SCF receptor through posttranscriptional modifications might further contribute to our understanding of the synergistic interplay of TNF-alpha and SCF.

摘要

c-kit原癌基因编码一种跨膜糖蛋白,该蛋白与最近克隆的干细胞因子(SCF)的受体相同。本研究检测了原发性急性髓性白血病(AML)原始细胞中c-kit转录本的组成性合成,以及重组人肿瘤坏死因子(TNF)-α对这些细胞中c-kit mRNA表达的影响。在所研究的10个不同AML样本中,有10个样本可检测到低水平的c-kit转录本。TNF处理AML细胞后,所有样本中的c-kit mRNA表达均增强。细胞核连续转录分析表明,c-kit基因在所有检测的白血病中均具有转录活性,转录速率不受TNF暴露的影响,提示c-kit mRNA积累存在转录后调控机制。在无TNF的情况下,c-kit转录本的半衰期为2至3小时,而在TNF处理的AML细胞中,c-kit半衰期为5至9小时。通过Northern印迹分析,蛋白质合成抑制降低了TNF诱导的c-kit mRNA表达,但不影响c-kit基因的转录速率。在存在蛋白质合成抑制的情况下,TNF诱导的白血病细胞中c-kit转录本的半衰期降至2至4小时。这些发现表明,c-kit mRNA水平受一种不稳定蛋白质的控制,该蛋白质参与TNF介导的c-kit转录本稳定化。TNF-α的作用还扩展到蛋白质水平,因为TNF-α处理原发性AML与其中一些细胞表面SCF受体表达增强有关。虽然外源性SCF可诱导所研究的所有原发性AML样本的克隆生长,但TNF-α未能刺激白血病细胞增殖。然而,SCF和TNF-α的联合应用在9个不同AML样本中的7个中导致了协同生长刺激。通过转录后修饰对SCF受体进行转调节的发现可能进一步有助于我们理解TNF-α和SCF的协同相互作用。

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