Turriziani O, Schuetz J D, Focher F, Scagnolari C, Sampath J, Adachi M, Bambacioni F, Riva E, Antonelli G
Department of Experimental Medicine and Pathology, University "La Sapienza", 00185 Rome, Italy.
Biochem J. 2002 Nov 15;368(Pt 1):325-32. doi: 10.1042/BJ20020494.
Cellular factors may contribute to the decreased efficacy of chemotherapy in HIV infection. Indeed, prolonged treatment with nucleoside analogues, such as azidothymidine (AZT), 2',3'-deoxycytidine or 9-(2-phosphonylmethoxyethyl)adenine, induces cellular resistance. We have developed a human T lymphoblastoid cell line (CEM 3TC) that is selectively resistant to the antiproliferative effect of 2',3'-dideoxy-3'-thiacytidine (3TC) because the CEM 3TC cells were equally sensitive to AZT, as well as the antimitotic agent, vinblastine. The anti-retroviral activity of 3TC against HIV-1 was also severely impaired in the CEM 3TC cells. Despite similar deoxycytidine kinase activity and unchanged uptake of nucleosides such as AZT and 2'-deoxycytidine, CEM 3TC had profoundly impaired 3TC accumulation. Further studies indicated that CEM 3TC retained much less 3TC. However, despite a small overexpression of multidrug resistance protein (MRP) 4, additional studies with cells specifically engineered to overexpress MRP4 demonstrated there was no impact on either 3TC accumulation or efflux. Finally, an increased expression of the MRP5 homologue, ATP-binding cassette C11 (ABCC11) was observed in the CEM 3TC cells. We speculate that the decreased 3TC accumulation in the CEM 3TC might be due to the upregulation of ABCC11.
细胞因子可能导致HIV感染中化疗疗效降低。事实上,用核苷类似物如叠氮胸苷(AZT)、2',3'-脱氧胞苷或9-(2-膦酰甲氧基乙基)腺嘌呤进行长期治疗会诱导细胞产生耐药性。我们建立了一种人T淋巴母细胞系(CEM 3TC),该细胞系对2',3'-二脱氧-3'-硫代胞苷(3TC)的抗增殖作用具有选择性耐药,因为CEM 3TC细胞对AZT以及抗有丝分裂剂长春碱同样敏感。在CEM 3TC细胞中,3TC对HIV-1的抗逆转录病毒活性也严重受损。尽管CEM 3TC细胞具有相似的脱氧胞苷激酶活性且对AZT和2'-脱氧胞苷等核苷的摄取未改变,但其3TC蓄积却严重受损。进一步研究表明,CEM 3TC细胞保留的3TC要少得多。然而,尽管多药耐药蛋白(MRP)4有少量过表达,但对经过基因工程改造以过表达MRP4的细胞进行的额外研究表明,这对3TC的蓄积或外排均无影响。最后,在CEM 3TC细胞中观察到MRP5同源物ATP结合盒C11(ABCC11)的表达增加。我们推测,CEM 3TC细胞中3TC蓄积减少可能是由于ABCC11上调所致。