急性髓性白血病患者脱氧胞苷激酶单核苷酸多态性与治疗反应的关系

Jing-Yi Shi, Zhan-Zhong Shi, Su-Jiang Zhang, Yong-Mei Zhu, Bai-Wei Gu, Guo Li, Xue-Tao Bai, Xiao-Dong Gao, Jiong Hu, Wei Jin, Wei Huang, Zhu Chen, Sai-Juan Chen
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引用次数: 76

摘要

1- β -阿拉伯糖醛基胞嘧啶(AraC)耐药性的发展是急性髓性白血病(AML)患者治疗的主要障碍。功能性脱氧胞苷激酶(dCK)缺乏在体外AraC耐药中起重要作用。我们筛选了dCK基因的5378 bp序列,包括所有外显子和5'侧区,并在调控区(rsnp)中发现了两个高等位基因频率的单核苷酸多态性(snp)。这两个rsnp (-201C>T和-360C>G)形成了两个主要的单倍型。122例AML患者的测序和MassARRAY系统基因分型显示,-360CG/-201CT和-360GG/-201TT复合基因型患者(n = 41)对化疗反应良好,而-360CC/-201CC患者(n = 81)对化疗反应较差(P = 0.025)。实时定量逆转录聚合酶链反应显示-360CG/-201CT和-360GG/-201TT基因型患者的dCK mRNA表达水平高于-360CC/-201CC基因型患者(P = 0.0034)。荧光素酶报告基因分析显示,携带-360G/-201T基因型的dck5 '调控区转录激活活性比携带-360C/-201C基因型的dck5 '调控区高8倍,而携带-360G/-201T和-360C/-201C基因型的dck5 '调控区转录激活活性比携带-360C/-201C基因型的dck5 '调控区转录激活活性高4倍。这些结果表明,dCK基因的rSNP单倍型可以作为预测药物反应性的遗传标记,这将有助于建立更有效的AML化疗方案。
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Association between single nucleotide polymorphisms in deoxycytidine kinase and treatment response among acute myeloid leukaemia patients.

Development of resistance to 1-beta-arabinofuranosylcytosine (AraC) is a major obstacle in the treatment of patients with acute myeloid leukaemia (AML). Deficiency of functional deoxycytidine kinase (dCK) plays an important role in AraC resistance in vitro. We screened 5378 bp sequences of the dCK gene, including all exons and the 5' flanking region, and identified two single nucleotide polymorphisms (SNPs) in the regulatory region (rSNPs) with high allele frequencies. These two rSNPs (-201C>T and -360C>G) formed two major haplotypes. Genotyping with sequencing and MassARRAY system among 122 AML patients showed that those with -360CG/-201CT and -360GG/-201TT compound genotypes (n = 41) displayed a favourable response to chemotherapy whereas those with -360CC/-201CC (n = 81) tended to have a poor response (P = 0.025). Moreover, real-time quantitative reverse transcriptase-polymerase chain reaction showed that patients with -360CG/-201CT and -360GG/-201TT genotypes expressed higher level of dCK mRNA compared to those with the -360CC/-201CC genotype (P = 0.0034). Luciferase-reporter assay showed that dCK 5' regulatory region bearing -360G/-201T genotype alone had an eight-fold greater transcriptional activation activity compared to that with -360C/-201C genotype, whereas co-transfection of both -360G/-201T and -360C/-201C constructs mimicked the heterozygous genotype, which exhibited a four-fold greater activity compared to that with -360C/-201C. These results indicate that rSNP haplotypes of dCK gene may serve as a genetic marker for predicting drug responsiveness, which will be beneficial in establishing more effective AML chemotherapeutic regimens.

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