PO.ET07.02 · 实验与分子治疗
DPYD rs75017182携带者中的部分选择性剪接解释了其与严重5-FU毒性的中等程度关联
Partial alternative splicing in carriers of DPYD rs75017182 explains modest association with severe 5-FU toxicity to 5-FU
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摘要 Abstract
中文摘要
二氢嘧啶脱氢酶(DPD,由DPYD基因编码)是广泛使用的化疗药物5-氟尿嘧啶(5-FU)分解代谢的限速酶。DPYD的基因变异是5-FU毒性的预测性生物标志物。其中一种生物标志物rs75017182(与"HapB3"单倍型相关的致病等位基因)被认为可促进DPYD的选择性剪接,导致表达一种无活性的蛋白亚型。然而,与另一种经充分研究的剪接变异rs3918290(*2A)的携带者相比,rs75017182携带者仅表现出中等程度增加的5-FU毒性风险和轻度降低的离体DPD活性。我们假设,与*2A不同,rs75017182变异不引起必然的选择性剪接,而是促进部分选择性剪接。为验证这一点,我们构建了含有G(野生型)或C(变异型)等位基因的双荧光小基因报告构建体。在我们的小基因系统中,通过流式细胞术检测,转染含C载体的细胞中选择性剪接升高,尽管其水平低于平行*2A模型中观察到的水平。为研究与rs75017182处于连锁不平衡(LD)的其他变异的贡献,我们扩展了报告构建体以纳入其他相关基因组区域。这些分析辅以对经工程改造以携带各种变异组合的细胞以及携带特定基因型组合的类淋巴母细胞系中体内剪接的研究。总体而言,我们的发现表明rs75017182-C仅促进部分选择性剪接,引起DPD活性的适度下降,从而解释了其与严重5-FU毒性相对较弱的关联。处于LD中的其他变异对剪接和5-FU敏感性的影响极小。
查看英文原文 English abstract
Dihydropyrimidine dehydrogenase (DPD, encoded by the DPYD gene) is the rate-limiting enzyme in the catabolism of the widely used chemotherapeutic drug 5-fluorouracil (5-FU). Genetic variations in DPYD are predictive biomarkers of 5-FU toxicity. One such biomarker, rs75017182 (the causal allele linked to the “HapB3” haplotype), has been suggested to promote alternative splicing of DPYD , leading to expression of an inactive proteoform. However, carriers of rs75017182 exhibit only moderately increased risk of 5-FU toxicity and modestly decreased ex vivo DPD activity compared to carriers of another well-studied splice variant, rs3918290 (* 2A ). We hypothesized that, unlike * 2A, the rs75017182 variant does not cause obligate alternative splicing but instead promotes partial alternative splicing. To test this, we generated dual-fluorescent minigene reporter constructs containing either the G (wildtype) or C (variant) allele. In our minigene system, alternative splicing was elevated in cells transfected with C-containing vectors via flow cytometry, though levels were lower than those observed in a parallel * 2A model. To investigate contributions of other variants in LD with rs75017182, we expanded the reporter to include additional relevant genomic regions. The analyses were complemented by the study of in vivo splicing in cells engineered to harbor various combinations of variants and in lymphoblastoid lines carrying specific genotype combinations. Overall, our findings demonstrate that rs75017182-C promotes only partial alternative splicing, eliciting a modest decrease in DPD activity and explaining its comparatively weak association with severe 5-FU toxicity. Additional variants in LD have a minimal impact on splicing and 5-FU sensitivity.
利益披露 Disclosure
L. A. Hahn, None..
R. Schwartz, None..
L. Jiang, None..
B. Bembenek, None..
K. Bouchonville, None..
S. M. Offer, None.