Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520.
Institute of Medical Virology, University Hospital Frankfurt, 60596 Frankfurt, Germany.
Proc Natl Acad Sci U S A. 2018 Oct 23;115(43):E10022-E10031. doi: 10.1073/pnas.1805593115. Epub 2018 Oct 10.
SAMHD1 is a deoxynucleoside triphosphate triphosphohydrolase (dNTPase) that depletes cellular dNTPs in noncycling cells to promote genome stability and to inhibit retroviral and herpes viral replication. In addition to being substrates, cellular nucleotides also allosterically regulate SAMHD1 activity. Recently, it was shown that high expression levels of SAMHD1 are also correlated with significantly worse patient responses to nucleotide analog drugs important for treating a variety of cancers, including acute myeloid leukemia (AML). In this study, we used biochemical, structural, and cellular methods to examine the interactions of various cancer drugs with SAMHD1. We found that both the catalytic and the allosteric sites of SAMHD1 are sensitive to sugar modifications of the nucleotide analogs, with the allosteric site being significantly more restrictive. We crystallized cladribine-TP, clofarabine-TP, fludarabine-TP, vidarabine-TP, cytarabine-TP, and gemcitabine-TP in the catalytic pocket of SAMHD1. We found that all of these drugs are substrates of SAMHD1 and that the efficacy of most of these drugs is affected by SAMHD1 activity. Of the nucleotide analogs tested, only cladribine-TP with a deoxyribose sugar efficiently induced the catalytically active SAMHD1 tetramer. Together, these results establish a detailed framework for understanding the substrate specificity and allosteric activation of SAMHD1 with regard to nucleotide analogs, which can be used to improve current cancer and antiviral therapies.
SAMHD1 是一种脱氧核苷三磷酸三磷酸水解酶(dNTPase),它可在非循环细胞中耗尽细胞内的 dNTP,以促进基因组稳定性并抑制逆转录病毒和疱疹病毒的复制。除了作为底物,细胞核苷酸还通过别构调节 SAMHD1 活性。最近,研究表明 SAMHD1 的高表达水平也与患者对治疗各种癌症(包括急性髓细胞白血病 (AML))的核苷酸类似物药物的反应明显更差相关。在这项研究中,我们使用生化、结构和细胞方法研究了各种癌症药物与 SAMHD1 的相互作用。我们发现,SAMHD1 的催化和别构部位均对核苷酸类似物的糖修饰敏感,别构部位的限制更为显著。我们将 cladribine-TP、clofarabine-TP、fludarabine-TP、vidarabine-TP、cytarabine-TP 和 gemcitabine-TP 结晶在 SAMHD1 的催化口袋中。我们发现,所有这些药物都是 SAMHD1 的底物,并且大多数这些药物的功效都受 SAMHD1 活性的影响。在测试的核苷酸类似物中,只有带有脱氧核糖的 cladribine-TP 能够有效地诱导催化活性的 SAMHD1 四聚体。总之,这些结果为理解核苷酸类似物与 SAMHD1 的底物特异性和别构激活建立了一个详细的框架,可用于改善当前的癌症和抗病毒疗法。