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首页> 外文期刊>The biochemical journal >Activation of the Na+/H+ antiport is not required for epidermal growth factor-dependent gene expression, growth inhibition or proliferation in human breast cancer cells
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Activation of the Na+/H+ antiport is not required for epidermal growth factor-dependent gene expression, growth inhibition or proliferation in human breast cancer cells

机译:表皮生长因子依赖性基因在人乳腺癌细胞中的表达,生长抑制或增殖不需要Na + / H +反向转运

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pMitogen interaction with specific receptors in many cell types leads to activation of the Na+/H+ antiport and a resultant cytoplasmic alkalinization. Since amiloride inhibits both Na+/H+ exchange and cell proliferation, it has been hypothesized that activation of the antiport is an obligatory requirement for mitogenesis. However, concentrations of amiloride which inhibit the antiport also inhibit other cellular processes, including protein synthesis and phosphorylation. We have used an epidermal growth factor (EGF) receptor gene-amplified human breast cancer cell line, the growth of which is inhibited by high levels of EGF in culture (MDA-468) and a variant, the growth of which is stimulated by EGF (MDA-468-S4), along with two potent amiloride analogues to examine whether activation of the Na+/H+ antiport and cytoplasmic alkalinization is necessary for both EGF-dependent effects to occur. At concentrations of the amiloride analogues which block Na+/H+ exchange in both cell types by 76-98%, the EGF-dependent alterations in [3H]thymidine incorporation or induction in c-myc or c-fos gene transcription were unaltered. These results were confirmed by a lack of effect of the amiloride analogues on both the growth-stimulatory and growth-inhibitory effects on EGF in an anchorage-independent growth assay. Similarly, in pH-altered media that prevented normal cytoplasmic alkalinization, the response of both MDA-468 and MDA-468-S4 to EGF activation was unaltered. In addition, activation of the Na+/H+ antiport alone was not sufficient to induce c-myc and c-fos transcription in either cell type. Taken together, these data suggest that neither the Na+/H+ antiport nor cytoplasmic alkalinization are necessary or sufficient for either EGF-dependent growth stimulation or growth inhibition in MDA-468 human breast cancer cells./p
机译:>在许多细胞类型中,丝裂原与特定受体的相互作用导致Na + / H +反向转运的活化,并导致胞质碱化。由于阿米洛利同时抑制Na + / H +交换和细胞增殖,因此已经假设反端口的激活是促有丝分裂的必需条件。然而,抑制反端口的阿米洛利浓度也抑制其他细胞过程,包括蛋白质合成和磷酸化。我们已经使用了表皮生长因子(EGF)受体基因扩增的人乳腺癌细胞系,其生长受到培养物中高水平EGF(MDA-468)的抑制,而其变体受EGF刺激(MDA-468-S4),以及两种有效的阿米洛利类似物,以检查是否需要激活Na + / H +反向转运和胞质碱化才能产生两种依赖EGF的效应。在能使两种细胞类型的Na + / H +交换受阻的阿米洛利类似物的浓度达到76-98%时,[3H]胸苷掺入或c-myc或c-fos基因转录诱导中的EGF依赖性改变没有改变。这些结果被阿米洛利类似物在不依赖于锚定的生长试验中对EGF的生长刺激和生长抑制作用均缺乏影响所证实。同样,在阻止正常细胞质碱化的pH值改变的培养基中,MDA-468和MDA-468-S4对EGF活化的响应均未改变。此外,仅激活Na + / H +反向转运不足以在两种细胞类型中诱导c-myc和c-fos转录。综上所述,这些数据表明Na + / H +反向转运和细胞质碱化对于MGF-468人乳腺癌细胞中依赖EGF的生长刺激或生长抑制均不是必需的或不足的。

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