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沉默调节蛋白1抑制硫氰酸盐(S1th)——一类新型的NAD依赖型赖氨酸脱乙酰酶的同型选择性抑制剂。

Sirtuin 1 Inhibiting Thiocyanates (S1th)-A New Class of Isotype Selective Inhibitors of NAD Dependent Lysine Deacetylases.

作者信息

Wössner Nathalie, Alhalabi Zayan, González Jessica, Swyter Sören, Gan Jin, Schmidtkunz Karin, Zhang Lin, Vaquero Alejandro, Ovaa Huib, Einsle Oliver, Sippl Wolfgang, Jung Manfred

机构信息

Department of Pharmaceutical and Medicinal Chemistry, Institute of Pharmaceutical Sciences, University of Freiburg, Freiburg im Breisgau, Germany.

Department of Medicinal Chemistry, Institute of Pharmacy, University of Halle-Wittenberg, Halle, Germany.

出版信息

Front Oncol. 2020 Apr 30;10:657. doi: 10.3389/fonc.2020.00657. eCollection 2020.

Abstract

Sirtuin 1 (Sirt1) is a NAD dependent lysine deacetylase associated with the pathogenesis of various diseases including cancer. In many cancer types Sirt1 expression is increased and higher levels have been associated with metastasis and poor prognosis. However, it was also shown, that Sirt1 can have tumor suppressing properties and in some instances even a dual role for the same cancer type has been reported. Increased Sirt1 activity has been linked to extension of the life span of cells, respectively, organisms by promoting DNA repair processes and downregulation of tumor suppressor proteins. This may have the downside of enhancing tumor growth and metastasis. In mice embryonic fibroblasts depletion of Sirt1 was shown to decrease levels of the DNA damage sensor histone H2AX. Impairment of DNA repair mechanisms by Sirt1 can promote tumorigenesis but also lower chemoresistance toward DNA targeting therapies. Despite many biological studies, there is currently just one small molecule Sirt1 inhibitor in clinical trials. Selisistat (EX-527) reached phase III clinical trials for treatment of Huntington's Disease. New small molecule Sirt1 modulators are crucial for further investigation of the contradicting roles of Sirt1 in cancer. We tested a small library of commercially available compounds that were proposed by virtual screening and docking studies against Sirt1, 2 and 3. A thienopyrimidone featuring a phenyl thiocyanate moiety was found to selectively inhibit Sirt1 with an IC of 13 μM. Structural analogs lacking the thiocyanate function did not show inhibition of Sirt1 revealing this group as key for the selectivity and affinity toward Sirt1. Further analogs with higher solubility were identified through iterative docking studies and testing. The most active compounds (down to 5 μM IC) were further studied in cells. The ratio of phosphorylated γH2AX to unmodified H2AX is lower when Sirt1 is depleted or inhibited. Our new Sirtuin 1 inhibiting thiocyanates (S1th) lead to similarly lowered γH2AX/H2AX ratios in mouse embryonic fibroblasts as Sirt1 knockout and treatment with the reference inhibitor EX-527. In addition to that we were able to show antiproliferative activity, inhibition of migration and colony forming as well as hyperacetylation of Sirt1 targets p53 and H3 by the S1th in cervical cancer cells (HeLa). These results reveal thiocyanates as a promising new class of selective Sirt1 inhibitors.

摘要

沉默调节蛋白1(Sirt1)是一种依赖烟酰胺腺嘌呤二核苷酸(NAD)的赖氨酸脱乙酰酶,与包括癌症在内的多种疾病的发病机制相关。在许多癌症类型中,Sirt1表达增加,且较高水平与转移和不良预后相关。然而,也有研究表明,Sirt1可具有肿瘤抑制特性,甚至在某些情况下,同一癌症类型中还报道了其双重作用。Sirt1活性增加分别与通过促进DNA修复过程和下调肿瘤抑制蛋白来延长细胞及生物体的寿命有关。这可能存在增强肿瘤生长和转移的不利方面。在小鼠胚胎成纤维细胞中,Sirt1的缺失会导致DNA损伤传感器组蛋白H2AX水平降低。Sirt1对DNA修复机制的损害可促进肿瘤发生,但也会降低对DNA靶向治疗的化疗耐药性。尽管进行了许多生物学研究,但目前仅有一种小分子Sirt1抑制剂处于临床试验阶段。塞利西ostat(EX - 527)已进入治疗亨廷顿舞蹈病的III期临床试验。新型小分子Sirt1调节剂对于进一步研究Sirt1在癌症中的矛盾作用至关重要。我们测试了一个由虚拟筛选和对接研究针对Sirt1、2和3提出的市售化合物小型文库。发现一种带有苯基硫氰酸盐部分的噻吩并嘧啶酮以13μM的半数抑制浓度(IC)选择性抑制Sirt1。缺乏硫氰酸盐功能的结构类似物未显示对Sirt1的抑制作用,表明该基团是对Sirt1选择性和亲和力的关键。通过迭代对接研究和测试鉴定出了具有更高溶解度的进一步类似物。对活性最高的化合物(半数抑制浓度低至5μM)在细胞中进行了进一步研究。当Sirt1被耗尽或抑制时,磷酸化γH2AX与未修饰H2AX的比例会降低。我们新的抑制沉默调节蛋白1的硫氰酸盐(S1th)在小鼠胚胎成纤维细胞中导致γH2AX/H2AX比例降低,与Sirt1基因敲除以及用参考抑制剂EX - 527处理的情况相似。除此之外,我们还能够证明S1th在宫颈癌细胞(HeLa)中具有抗增殖活性、抑制迁移和集落形成以及使Sirt1靶点p53和H3发生高乙酰化。这些结果表明硫氰酸盐是一类有前景的新型选择性Sirt1抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/772f/7203344/114e9d0b1b3a/fonc-10-00657-g0001.jpg

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