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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Contribution of Na+,HCO3--cotransport to cellular pH control in human breast cancer: A role for the breast cancer susceptibility locus NBCn1 (SLC4A7)
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Contribution of Na+,HCO3--cotransport to cellular pH control in human breast cancer: A role for the breast cancer susceptibility locus NBCn1 (SLC4A7)

机译:Na +,HCO3--共转运对人类乳腺癌细胞pH控制的贡献:对乳腺癌易感性基因座NBCn1(SLC4A7)的作用

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Genome-wide association studies recently linked the locus for Na +,HCO3 --cotransporter NBCn1 (SLC4A7) to breast cancer susceptibility, yet functional insights have been lacking. To determine whether NBCn1, by transporting HCO3 - into cells, may dispose of acid produced during high metabolic activity, we studied the expression of NBCn1 and the functional impact of Na+,HCO 3 --cotransport in human breast cancer. We found that the plasmalemmal density of NBCn1 was 20-30% higher in primary breast carcinomas and metastases compared to matched normal breast tissue. The increase in NBCn1 density was similar in magnitude to that observed for Na+/H +-exchanger NHE1 (SLC9A1), a transporter previously implicated in cell migration, proliferation and malignancy. In primary breast carcinomas, the apparent molecular weight for NBCn1 was increased compared to normal tissue. Using pH-sensitive fluorophores, we showed that Na+,HCO 3 --cotransport is the predominant mechanism of acid extrusion and is inhibited 34 ± 9% by 200 μM 4,4′- diisothiocyanatostilbene-2,2′-disulfonic acid in human primary breast carcinomas. At intracellular pH (pHi) levels 6.6, CO 2/HCO3 --dependent mechanisms accounted for 90% of total net acid extrusion. Na+/H+-exchange activity was prominent only at lower pHi-values. Furthermore, steady-state pHi was 0.35 ± 0.06 units lower in the absence than in the presence of CO2/HCO3 -. In conclusion, expression of NBCn1 is upregulated in human primary breast carcinomas and metastases compared to normal breast tissue. Na +,HCO3 --cotransport is a major determinant of pHi in breast cancer and the modest DIDS-sensitivity is consistent with NBCn1 being predominantly responsible. Hence, our results suggest a major pathophysiological role for NBCn1 that may be clinically relevant. What's new? Genome-wide association studies have linked the Na+,HCO 3 --cotransporter NBCn1 (SLC4A7) to human breast cancer. The Danish researchers show that NBCn1 expression is upregulated in human breast carcinomas and metastases. Furthermore, they identify Na+,HCO 3 --cotransport as a major mechanism of acid extrusion critical for intracellular pH control in human primary breast carcinomas. These data implicate NBCn1 in the pathophysiology of breast cancer and may provide clues to future therapeutic strategies.
机译:全基因组关联研究最近将Na +,HCO3-cotransporter NBCn1(SLC4A7)的基因位点与乳腺癌易感性联系起来,但缺乏功能方面的见解。为了确定NBCn1是否通过将HCO3-转运到细胞中来处理高代谢活动中产生的酸,我们研究了NBCn1的表达以及Na +,HCO 3-共转运在人乳腺癌中的功能影响。我们发现与匹配的正常乳腺组织相比,在原发性乳腺癌和转移灶中,NBCn1的质膜密度高20-30%。 NBCn1密度的增加幅度与Na + / H +交换子NHE1(SLC9A1)所观察到的相似,后者以前与细胞迁移,增殖和恶性肿瘤有关。在原发性乳腺癌中,与正常组织相比,NBCn1的表观分子量增加了。使用对pH敏感的荧光团,我们发现Na +,HCO 3-共转运是酸挤出的主要机理,并在人类原发性肝癌中被200μM4,4'- diisothiocyanatostilbene-2,2'-diulfonic acid抑制34±9%乳腺癌。在细胞内pH(pHi)水平> 6.6时,依赖于CO 2 / HCO3的机制占总净酸挤出的> 90%。 Na + / H +交换活性仅在较低的pHi值下才显着。此外,不存在时的稳态pHi比存在CO2 / HCO3-的情况下低0.35±0.06个单位。总之,与正常乳腺组织相比,NBCn1在人原发性乳腺癌和转移灶中的表达上调。 Na +,HCO3-共转运是乳腺癌中pHi的主要决定因素,适度的DIDS敏感性与NBCn1发挥主要作用相一致。因此,我们的结果表明NBCn1的主要病理生理作用可能与临床有关。什么是新的?全基因组关联研究已将Na +,HCO 3-共转运蛋白NBCn1(SLC4A7)与人类乳腺癌联系起来。丹麦研究人员表明,NBCn1在人类乳腺癌和转移灶中的表达上调。此外,他们将Na +,HCO 3-共转运确定为酸挤出的主要机制,这对人类原发性乳腺癌的细胞内pH控制至关重要。这些数据暗示NBCn1在乳腺癌的病理生理中可能为将来的治疗策略提供线索。

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