The First Hospital of Jilin University, Institute of Virology and AIDS Research & Key Laboratory of Zoonosis, Ministry of Education, College of Veterinary Medicine, Jilin University, Changchun, China.
Jilin Provincial Key Laboratory on Molecular and Chemical Genetics, The Second Hospital of Jilin University, Changchun, China.
Biochem Biophys Res Commun. 2019 Nov 5;519(2):213-219. doi: 10.1016/j.bbrc.2019.08.155. Epub 2019 Sep 4.
Long interspersed nuclear elements (LINE-1) is now considered as the only active autonomous mobile DNA in humans, LINE-1 retrotransposition activities are associated with and fluctuate during cancer initiation and progression; however, the mechanism underlying the increased LINE-1 activity in cancer is poorly understood. SAMHD1 has been reported to be a potent inhibitor of LINE-1 retrotransposition, and SAMHD1 mutations are frequently associated with cancer development. To gain insights on whether cancer-related SAMHD1 mutants affect LINE-1 activity, we explored the biochemical and cellular properties of some human mutants known correlate with the development of cancer. Most of the tested SAMHD1 cancer-related mutations were defective in LINE-1 inhibition. Interestingly we also found that SAMHD1 mutant K288T was defective for dNTPase activity but showed potent activity against LINE-1 retrotransposition. These findings suggest that LINE-1 inhibition does not depend solely on the dNTPase activity of SAMHD1. In contrast, SAMHD1's ability to inhibit ORF2p-mediated LINE-1 RNP reverse transcription was correlated with SAMHD1-mediated LINE-1 inhibition. Together, our data could also facilitate the deeper understanding for the inhibition of endogenous LINE-1 elements by SAMHD1.
长散布核元件 (LINE-1) 现在被认为是人类中唯一具有自主活性的可移动 DNA,LINE-1 反转录转座活性与癌症的发生和发展有关,并随其波动;然而,癌症中 LINE-1 活性增加的机制尚未完全阐明。SAMHD1 已被报道为 LINE-1 反转录转座的有效抑制剂,并且 SAMHD1 突变经常与癌症的发生相关。为了深入了解与癌症相关的 SAMHD1 突变体是否影响 LINE-1 活性,我们研究了一些已知与癌症发展相关的人类突变体的生化和细胞特性。大多数测试的与癌症相关的 SAMHD1 突变体在抑制 LINE-1 方面存在缺陷。有趣的是,我们还发现 SAMHD1 突变体 K288T 对 dNTPase 活性有缺陷,但对 LINE-1 反转录转座具有很强的活性。这些发现表明,LINE-1 抑制并不完全依赖于 SAMHD1 的 dNTPase 活性。相反,SAMHD1 抑制 ORF2p 介导的 LINE-1 RNP 反转录的能力与 SAMHD1 介导的 LINE-1 抑制相关。总的来说,我们的数据还可以促进对 SAMHD1 抑制内源性 LINE-1 元件的更深入理解。