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首页> 外文期刊>Toxicology Research >Dephosphorylation of Tak1 at Ser412 greatly contributes to the spermatocyte-specific testis toxicity induced by (5R)-5-hydroxytriptolide in C57BL/6 mice
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Dephosphorylation of Tak1 at Ser412 greatly contributes to the spermatocyte-specific testis toxicity induced by (5R)-5-hydroxytriptolide in C57BL/6 mice

机译:Tak1在Ser412上的去磷酸化极大地促进了C57BL / 6小鼠中(5R)-5-hydroxytriptolide诱导的精母细胞特异性睾丸毒性

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摘要

(5R)-5-Hydroxytriptolide (LLDT-8), a novel triptolide derivative, will proceed to phase II clinical trials for the treatment of rheumatoid arthritis and cancer. However, the selection of disease and patients is largely limited by the testis toxicity, yet toxicity mechanisms are still poorly understood. In this study, LLDT-8 dose and time-dependently decreased the testes weight, germinal cell layers and induced abnormal spermatid development. Analysis of the germ cell-specific marker showed that spermatocytes were more sensitive to LLDT-8, which was confirmed by the in vitro sensitivity assay with spermatocyte-like GC-2spd and sertoli-like TM4 cells. In GC-2spd, LLDT-8 induced G1/S arrest and apoptosis. MAPK activity screening identified that TGF-beta activated kinase 1 (Tak1) is critical in LLDT-8 induced apoptosis. LLDT-8 reduced the Tak1 protein and dephosphorylated Tak1 at Ser412 in GC-2spd and the testes, but not in TM4. RNAi mediated depletion or pharmacologic inhibition of Tak1 induced apoptosis in GC-2spd. Meanwhile, activating Tak1 rescued up to 50% of the GC-2spd cells from the apoptosis induced by LLDT-8. Altogether, our study firstly revealed the important role of Tak1 in the survival of spermatocytes, and dephosphorylation of Tak1 at Ser412 may contribute to the spermatocyte-specific testis toxicity induced by LLDT-8.
机译:(5R)-5-Hydroxytriptolide(LLDT-8),一种新型的雷公藤内酯衍生物,将进入治疗类风湿关节炎和癌症的II期临床试验。然而,疾病和患者的选择在很大程度上受到睾丸毒性的限制,但是毒性机制仍知之甚少。在这项研究中,LLDT-8剂量和时间依赖性地减少了睾丸的重量,生殖细胞层并诱导了精子的异常发育。对生殖细胞特异性标志物的分析表明,精子细胞对LLDT-8更为敏感,这通过精子细胞样GC-2spd和精子细胞样TM4细胞的体外敏感性试验得以证实。在GC-2spd中,LLDT-8诱导G1 / S阻滞和凋亡。 MAPK活性筛选确定TGF-β激活的激酶1(Tak1)在LLDT-8诱导的细胞凋亡中至关重要。 LLDT-8降低了GC-2spd和睾丸中Ser412处的Tak1蛋白和Tak1去磷酸化,但TM4中没有。 RNAi介导的Tak1耗竭或药理抑制诱导GC-2spd凋亡。同时,激活Tak1可从LLDT-8诱导的细胞凋亡中挽救多达50%的GC-2spd细胞。总之,我们的研究首先揭示了Tak1在精母细胞存活中的重要作用,而Tak1在Ser412上的去磷酸化可能有助于LLDT-8诱导的精母细胞特异性睾丸毒性。

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