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噻唑呋林耐药细胞系中烟酰胺单核苷酸腺苷酰转移酶活性低:对NAD代谢和DNA修复的影响

Low nicotinamide mononucleotide adenylyltransferase activity in a tiazofurin-resistant cell line: effects on NAD metabolism and DNA repair.

作者信息

Boulton S, Kyle S, Durkacz B W

机构信息

Cancer Research Unit, Medical School, University of Newcastle upon Tyne, UK.

出版信息

Br J Cancer. 1997;76(7):845-51. doi: 10.1038/bjc.1997.473.

Abstract

Poly(ADP-ribose) polymerase (PADPRP), which uses NAD to synthesize ADP-ribose polymers, is activated by DNA strand breaks and mediates cellular responses to DNA damage. The consequences of low cellular NAD levels in a cell line deficient in nicotinamide mononucleotide adenylyltransferase (NMNAT), an enzyme essential for NAD biosynthesis, were investigated by assessing NAD metabolism and DNA repair after treatment with alkylating agents. A tiazofurin-resistant L1210 cell line (TZR) was isolated. NAD levels were approximately 5933 and 3375 pmol mg(-1) protein for parental (wild type, WT) and TZR cells respectively, and NMNAT levels were reduced by > 95%. TZR cells were more sensitive to temozolomide (TM) and 1-methyl-3-nitro-1-nitroso-guanidine (MNNG), particularly at concentrations that caused > 50% NAD depletion. TM and MNNG treatment decreased NAD levels in both cell lines, but took longer to return to control levels in TZR cells. For example, MNNG (5 microM), depleted NAD levels at 6 h to approximately 4512 (WT) and 1442 (TZR) pmol mg(-1) protein; however, NAD levels had returned to control levels by 8 h in WT cells, but were not restored by 16 h in TZR cells. Both cell lines were equisensitive to the growth-inhibitory effects of NU1025 per se (IC50 370 microM). Co-exposure of the cell lines to TM (100 microM) with increasing concentrations of NU1025 led to a synergistic enhancement of cytotoxicity, with IC50 values for NU1025 decreasing to 17 +/- 4 microM (TZR) and 37 +/- 6 microM (WT). A similar enhanced sensitivity to NU1025 (approximately 2.7-fold) was obtained when TZR cells were co-exposed to MNNG + NU1025. TM-induced DNA strand breaks were increased by co-incubation with NU1025, and again the TZR cell line showed increased sensitivity to NU1025. There were no significant changes in NMNAT activity in response to MNNG treatment over 24 h, either in the presence or in the absence of NU1025. These data demonstrate that modest decreases in cellular NAD levels can sensitize cells to alkylating agents and PADPRP inhibitors.

摘要

聚(ADP - 核糖)聚合酶(PADPRP)利用烟酰胺腺嘌呤二核苷酸(NAD)合成ADP - 核糖聚合物,它被DNA链断裂激活并介导细胞对DNA损伤的反应。通过评估用烷化剂处理后细胞的NAD代谢和DNA修复情况,研究了烟酰胺单核苷酸腺苷酸转移酶(NMNAT,NAD生物合成所必需的一种酶)缺陷的细胞系中低细胞NAD水平的后果。分离出了一种噻唑呋林抗性的L1210细胞系(TZR)。亲本(野生型,WT)和TZR细胞的NAD水平分别约为5933和3375 pmol mg(-1)蛋白质,且NMNAT水平降低了> 95%。TZR细胞对替莫唑胺(TM)和1 - 甲基 - 3 - 硝基 - 1 - 亚硝基胍(MNNG)更敏感,尤其是在导致> 50% NAD耗竭的浓度下。TM和MNNG处理均降低了两种细胞系中的NAD水平,但TZR细胞恢复到对照水平所需时间更长。例如,MNNG(5 microM)在6小时时使NAD水平分别降至约4512(WT)和1442(TZR)pmol mg(-1)蛋白质;然而,WT细胞在8小时时NAD水平已恢复到对照水平,而TZR细胞在16小时时仍未恢复。两种细胞系对NU-1025本身的生长抑制作用具有同等敏感性(IC50为370 microM)。细胞系与TM(100 microM)共同暴露于浓度不断增加的NU-1025导致细胞毒性协同增强,NU-1025的IC50值降至17±4 microM(TZR)和37±6 microM(WT)。当TZR细胞与MNNG + NU-1025共同暴露时,对NU-1025也获得了类似的增强敏感性(约2.7倍)。与NU-1025共同孵育会增加TM诱导DNA链断裂的程度,并且TZR细胞系对NU-1025再次表现出更高的敏感性。在24小时内,无论是否存在NU-1025,MNNG处理后NMNAT活性均无显著变化。这些数据表明,细胞NAD水平的适度降低可使细胞对烷化剂和PADPRP抑制剂敏感。

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