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抑制钠钾三磷酸腺苷酶泵可使癌细胞对失巢凋亡敏感,并防止远处肿瘤形成。

Inhibition of the sodium potassium adenosine triphosphatase pump sensitizes cancer cells to anoikis and prevents distant tumor formation.

作者信息

Simpson Craig D, Mawji Imtiaz A, Anyiwe Kika, Williams Moyo A, Wang Xiaoming, Venugopal Amudha L, Gronda Marcela, Hurren Rose, Cheng Sonia, Serra Stefano, Beheshti Zavareh Reza, Datti Alessandro, Wrana Jeffrey L, Ezzat Shereen, Schimmer Aaron D

机构信息

Ontario Cancer Institute, Princess Margaret Hospital, Toronto, ON, Canada.

出版信息

Cancer Res. 2009 Apr 1;69(7):2739-47. doi: 10.1158/0008-5472.CAN-08-2530. Epub 2009 Mar 17.

DOI:10.1158/0008-5472.CAN-08-2530
PMID:19293189
Abstract

Normal epithelial cells undergo apoptosis upon detachment from the extracellular matrix, a process termed "anoikis." However, malignant epithelial cells with metastatic potential resist anoikis and can survive in an anchorage-independent fashion. Molecules that sensitize resistant cells to anoikis will be useful chemical probes to understand this pathway. To identify novel anoikis sensitizers in anoikis-resistant PPC-1 prostate adenocarcinoma cells, a library of 2,000 off-patent drugs and natural products was screened for their ability to preferentially induce cell death in suspension over adherent culture conditions. This screen identified five members of the family of cardiac glycosides as anoikis sensitizers, including ouabain, peruvoside, digoxin, digitoxin, and strophanthidin. We conducted further studies with ouabain to discern the mechanism of cardiac glycoside-induced anoikis sensitization. Ouabain initiated anoikis through the mitochondrial pathway of caspase activation. In addition, ouabain sensitized cells to anoikis by inhibiting its known target, the Na(+)/K(+) ATPase pump, and inducing hypoosmotic stress. Resistance to anoikis permits cancer cells to survive in the circulation and facilitates their metastasis to distant organs, so we tested the effects of Na(+)/K(+) ATPase inhibition on distant tumor formation in mouse models. In these mouse models, ouabain inhibited tumor metastases but did not alter the growth of subcutaneous tumors. Thus, we have identified a novel mechanism to sensitize resistant cells to anoikis and decrease tumor metastasis. These results suggest a potential mechanism for the observed clinical reduction in metastasis and relapse in breast cancer patients who have undergone treatments with cardiac glycosides.

摘要

正常上皮细胞在脱离细胞外基质后会发生凋亡,这一过程称为“失巢凋亡”。然而,具有转移潜能的恶性上皮细胞能够抵抗失巢凋亡,并能以不依赖锚定的方式存活。使耐药细胞对失巢凋亡敏感的分子将成为理解这一途径的有用化学探针。为了在对失巢凋亡耐药的PPC-1前列腺腺癌细胞中鉴定新的失巢凋亡敏化剂,我们筛选了一个包含2000种非专利药物和天然产物的文库,以检测它们在悬浮培养条件下优先诱导细胞死亡而非贴壁培养条件下的细胞死亡的能力。该筛选鉴定出强心苷家族的五个成员为失巢凋亡敏化剂,包括哇巴因、紫花洋地黄苷、地高辛、洋地黄毒苷和毒毛花苷元。我们用哇巴因进行了进一步研究,以阐明强心苷诱导失巢凋亡敏化的机制。哇巴因通过半胱天冬酶激活的线粒体途径引发失巢凋亡。此外,哇巴因通过抑制其已知靶点钠钾ATP酶泵并诱导低渗应激,使细胞对失巢凋亡敏感。对失巢凋亡的抗性使癌细胞能够在循环中存活,并促进它们转移到远处器官,因此我们在小鼠模型中测试了钠钾ATP酶抑制对远处肿瘤形成的影响。在这些小鼠模型中,哇巴因抑制肿瘤转移,但不改变皮下肿瘤的生长。因此,我们确定了一种使耐药细胞对失巢凋亡敏感并减少肿瘤转移的新机制。这些结果提示了在接受强心苷治疗的乳腺癌患者中观察到的转移和复发临床减少的潜在机制。

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