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kit受体中的激活突变消除了ELM红白血病细胞生长对基质的需求,但并不阻止它们对促红细胞生成素作出反应而发生分化。

An activating mutation in the kit receptor abolishes the stroma requirement for growth of ELM erythroleukemia cells, but does not prevent their differentiation in response to erythropoietin.

作者信息

Leslie N R, O'Prey J, Bartholomew C, Harrison P R

机构信息

Beatson Institute for Cancer Research, CRC Beatson Laboratories, Glasgow, Scotland.

出版信息

Blood. 1998 Dec 15;92(12):4798-807.

PMID:9845547
Abstract

We have previously shown that murine ELM erythroleukemia cells can only be grown in vitro in the presence of a stromal feeder layer, or alternatively stem cell factor (SCF), without which they differentiate. When grown in the presence of SCF, ELM cells can still differentiate in response to erythropoietin (Epo), but growth on stroma prevents this. We previously isolated a stroma-independent ELM variant, ELM-I-1, that is also defective in Epo-induced differentiation. We show here that this variant has an activating mutation in the Kit receptor, converting aspartic acid 814 to histidine. Expression of the mutant receptor in stroma-dependent ELM-D cells causes growth factor-independent proliferation and also gives the cells a selective advantage, in terms of proliferation rate and clonegenicity, compared with ELM-D cells grown in optimal amounts of SCF. Expression of the mutant receptor in ELM-D cells also prevents spontaneous differentiation, but not differentiation induced by Epo. Analysis of mitogenic signaling pathways in these cells shows that the mutant receptor induces constitutive activation of p42/p44 mitogen-activated protein kinases. It also selectively inhibits the expression of p66Shc but not the p46/p52 Shc isoforms (as did treatment of ELM cells with SCF), which is of interest, because p66Shc is known to play an inhibitory role in growth factor signaling.

摘要

我们之前已经表明,小鼠ELM红白血病细胞只有在基质饲养层或干细胞因子(SCF)存在的情况下才能在体外生长,否则它们会分化。当在SCF存在的情况下生长时,ELM细胞仍能对促红细胞生成素(Epo)作出分化反应,但在基质上生长则会阻止这种情况。我们之前分离出了一种不依赖基质的ELM变体,即ELM-I-1,它在Epo诱导的分化方面也存在缺陷。我们在此表明,该变体在Kit受体中有一个激活突变,将天冬氨酸814转化为组氨酸。在依赖基质的ELM-D细胞中表达突变受体可导致不依赖生长因子的增殖,并且与在最佳量SCF中生长得ELM-D细胞相比,在增殖速率和克隆形成能力方面,也赋予细胞选择性优势。在ELM-D细胞中表达突变受体还可阻止自发分化,但不能阻止Epo诱导的分化。对这些细胞中促有丝分裂信号通路的分析表明,突变受体可诱导p42/p44丝裂原活化蛋白激酶的组成型激活。它还选择性地抑制p66Shc的表达,但不抑制p46/p52 Shc同工型(如同用SCF处理ELM细胞那样),这一点很有意思,因为已知p66Shc在生长因子信号传导中起抑制作用。

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