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天然存在的种系NT5C1A变体对化疗核苷类似物的药物遗传学特征分析。

Pharmacogenetic characterization of naturally occurring germline NT5C1A variants to chemotherapeutic nucleoside analogs.

作者信息

Saliba Jason, Zabriskie Ryan, Ghosh Rajarshi, Powell Bradford C, Hicks Stephanie, Kimmel Marek, Meng Qingchang, Ritter Deborah I, Wheeler David A, Gibbs Richard A, Tsai Francis T F, Plon Sharon E

机构信息

Departments of aMolecular and Human Genetics bBiochemistry and Molecular Biology cMolecular and Cellular Biology dHuman Genome Sequencing Center, Baylor College of Medicine eDepartment of Pediatrics, Texas Children's Cancer Center, Baylor College of Medicine fDepartment of Statistics, Rice University, Houston, Texas, USA.

出版信息

Pharmacogenet Genomics. 2016 Jun;26(6):271-9. doi: 10.1097/FPC.0000000000000208.

Abstract

BACKGROUND

Mutations or alterations in expression of the 5' nucleotidase gene family can lead to altered responses to treatment with nucleoside analogs. While investigating leukemia susceptibility genes, we discovered a very rare p.L254P NT5C1A missense variant in the substrate recognition motif. Given the paucity of cellular drug response data from the NT5C1A germline variation, we characterized p.L254P and eight rare variants of NT5C1A from genomic databases.

MATERIALS AND METHODS

Through lentiviral infection, we created HEK293 cell lines that stably overexpress wild-type NT5C1A, p.L254P, or eight NT5C1A variants reported in the National Heart Lung and Blood Institute Exome Variant Server (one truncating and seven missense). IC50 values were determined by cytotoxicity assays after exposure to chemotherapeutic nucleoside analogs (cladribine, gemcitabine, 5-fluorouracil). In addition, we used structure-based homology modeling to generate a three-dimensional model for the C-terminal region of NT5C1A.

RESULTS

The p.R180X (truncating), p.A214T, and p.L254P missense changes were the only variants that significantly impaired protein function across all nucleotide analogs tested (>5-fold difference vs. wild-type; P<0.05). Several of the remaining variants individually showed differential effects (both more and less resistant) across the analogs tested. The homology model provided a structural framework to understand the impact of NT5C1A mutants on catalysis and drug processing. The model predicted active site residues within NT5C1A motif III and we experimentally confirmed that p.K314 (not p.K320) is required for NT5C1A activity.

CONCLUSION

We characterized germline variation and predicted protein structures of NT5C1A. Individual missense changes showed considerable variation in response to the different nucleoside analogs tested, which may impact patients' responses to treatment.

摘要

背景

5'核苷酸酶基因家族的突变或表达改变可导致对核苷类似物治疗的反应改变。在研究白血病易感基因时,我们在底物识别基序中发现了一种非常罕见的p.L254P NT5C1A错义变异。鉴于NT5C1A种系变异的细胞药物反应数据匮乏,我们从基因组数据库中对p.L254P和NT5C1A的八个罕见变异进行了表征。

材料与方法

通过慢病毒感染,我们创建了稳定过表达野生型NT5C1A、p.L254P或美国国立心肺血液研究所外显子变异服务器报告的八个NT5C1A变异(一个截短变异和七个错义变异)的HEK293细胞系。在暴露于化疗核苷类似物(克拉屈滨、吉西他滨、5-氟尿嘧啶)后,通过细胞毒性测定确定IC50值。此外,我们使用基于结构的同源建模生成NTBC1A C末端区域的三维模型。

结果

p.R180X(截短)、p.A214T和p.L254P错义改变是在所测试的所有核苷酸类似物中显著损害蛋白质功能的仅有的变异(与野生型相比差异>5倍;P<0.05)。其余几个变异在各个测试的类似物中分别显示出不同的效应(既有更高的抗性也有更低的抗性)。同源模型提供了一个结构框架,以了解NT5C1A突变体对催化和药物加工的影响。该模型预测了NT5C1A基序III内的活性位点残基,并且我们通过实验证实p.K314(而非p.K320)是NT5C1A活性所必需的。

结论

我们对NT5C1A的种系变异和预测的蛋白质结构进行了表征。单个错义改变对所测试的不同核苷类似物的反应显示出相当大的差异,这可能会影响患者的治疗反应。

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