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High DNA methyltransferase 3B expression mediates 5-aza-deoxycytidine hypersensitivity in testicular germ cell tumors.

机译:高DNA甲基转移酶3B表达介导睾丸生殖细胞肿瘤中的5-氮杂-脱氧胞苷超敏反应。

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Testicular germ cell tumors (TGCT) are the most common solid tumors of 15- to 35-year-old men. TGCT patients are frequently cured with cytotoxic cisplatin-based therapy. However, TGCT patients refractory to cisplatin-based chemotherapy have a poor prognosis, as do those having a late relapse. Pluripotent embryonal carcinomas (EC) are the malignant counterparts to embryonic stem cells and are considered the stem cells of TGCTs. Here, we show that human EC cells are highly sensitive to 5-aza-deoxycytidine (5-aza-CdR) compared with somatic solid tumor cells. Decreased proliferation and survival with low nanomolar concentrations of 5-aza-CdR is associated with ATM activation, H2AX phosphorylation, increased expression of p21, and the induction of genes known to be methylated in TGCTs (MGMT, RASSF1A, and HOXA9). Notably, 5-aza-CdR hypersensitivity is associated with markedly abundant expression of the pluripotency-associated DNA methyltransferase 3B (DNMT3B) compared with somatic tumor cells. Knockdown of DNMT3B in EC cells results in substantial resistance to 5-aza-CdR, strongly indicating that 5-aza-CdR sensitivity is mechanistically linked to high levels of DNMT3B. Intriguingly, cisplatin-resistant EC cells retain an exquisite sensitivity to low-dose 5-aza-CdR treatment, and pretreatment of 5-aza-CdR resensitizes these cells to cisplatin-mediated toxicity. This resensitization is also partially dependent on high DNMT3B levels. These novel findings indicate that high expression of DNMT3B, a likely byproduct of their pluripotency and germ cell origin, sensitizes TGCT-derived EC cells to low-dose 5-aza-CdR treatment.
机译:睾丸生殖细胞肿瘤(TGCT)是15至35岁男性最常见的实体瘤。 TGCT患者经常通过细胞毒性的基于顺铂的疗法治愈。但是,对顺铂为基础的化疗难以治疗的TGCT患者和复发较晚的患者预后较差。多能胚胎癌(EC)是胚胎干细胞的恶性对应物,被认为是TGCT的干细胞。在这里,我们显示,与体细胞实体瘤细胞相比,人EC细胞对5-氮杂-脱氧胞苷(5-氮杂-CdR)高度敏感。低纳摩尔浓度的5-氮杂-CdR降低的增殖和存活与ATM激活,H2AX磷酸化,p21表达增加以及TGCT中已知甲基化的基因(MGMT,RASSF1A和HOXA9)的诱导有关。值得注意的是,与体细胞肿瘤细胞相比,5-氮杂-CdR超敏性与多能性相关的DNA甲基转移酶3B(DNMT3B)的大量表达相关。敲低EC细胞中DNMT3B会导致对5-氮杂-CdR的实质性耐药,强烈表明5-氮杂-CdR敏感性与高水平的DNMT3B发生了机械关联。有趣的是,对顺铂耐药的EC细胞对低剂量的5-氮杂-CdR处理保持了极好的敏感性,而对5-氮杂-CdR的预处理使这些细胞对顺铂介导的毒性重新敏感。这种重新敏感性也部分取决于高DNMT3B水平。这些新发现表明,DNMT3B的高表达是其多能性和生殖细胞起源的可能副产物,它使TGCT衍生的EC细胞对低剂量5-氮杂-CdR治疗敏感。

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