The NUDIX hydrolase NUDT5 influences purine nucleotide metabolism and thiopurine pharmacology.

Leo Kager,Kaan Boztug
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Abstract

Purine nucleotides are critical for nucleic acid synthesis, signaling, and cellular metabolism. Thiopurines (TPs), including 6-mercaptopurine and 6-thioguanine, are cornerstone agents for the treatment of acute lymphoblastic leukemia (ALL). TP efficacy and cytotoxicity depend on the metabolism and intracellular activation of TPs, a process influenced by pharmacogenes such as thiopurine-S methyltransferase (TPMT) and NUDIX (nucleoside diphosphates linked to moiety-X) hydrolase 15 (NUDT15). In this issue of the JCI, Maillard et al. identified NUDT5 as a determinant of TP pharmacology. They demonstrated that loss of NUDT5 conferred TP resistance by impairing drug activation and DNA damage responses. Metabolomics studies by Maillard and others revealed that NUDT5 may regulate the balance between the de novo purine synthesis and salvage pathways. Clinically, NUDT5 expression variants were associated with altered TP tolerance. These findings position NUDT5 as a key modulator of nucleotide metabolism and TP efficacy, with potential implications for pharmacogenomics-guided therapy optimization in ALL.
NUDIX水解酶NUDT5影响嘌呤核苷酸代谢和硫嘌呤药理学。
嘌呤核苷酸对核酸合成、信号传导和细胞代谢至关重要。硫嘌呤(TPs),包括6-巯基嘌呤和6-硫鸟嘌呤,是治疗急性淋巴细胞白血病(ALL)的基础药物。TP的功效和细胞毒性取决于TP的代谢和细胞内活化,这一过程受到硫嘌呤- s甲基转移酶(TPMT)和NUDIX(核苷二磷酸连接到moiex)水解酶15 (NUDT15)等药物基因的影响。在这一期的JCI中,Maillard等人发现NUDT5是TP药理学的决定因素。他们证明了NUDT5的缺失通过削弱药物激活和DNA损伤反应来赋予TP耐药性。Maillard等人的代谢组学研究表明,NUDT5可能调节新生嘌呤合成和回收途径之间的平衡。临床上,NUDT5表达变异与TP耐受性改变有关。这些发现表明NUDT5是核苷酸代谢和TP疗效的关键调节剂,对ALL药物基因组学指导下的治疗优化具有潜在的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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