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小鼠生殖系干细胞中异常的DNA甲基转移酶表达会导致生精缺陷。

Abnormal DNA methyltransferase expression in mouse germline stem cells results in spermatogenic defects.

作者信息

Takashima Seiji, Takehashi Masanori, Lee Jiyoung, Chuma Shinichiro, Okano Masaki, Hata Kenichiro, Suetake Isao, Nakatsuji Norio, Miyoshi Hiroyuki, Tajima Shoji, Tanaka Yoriko, Toyokuni Shinya, Sasaki Hiroyuki, Kanatsu-Shinohara Mito, Shinohara Takashi

机构信息

Department of Molecular Genetics, Graduate School of Medicine, Kyoto University, Kyoto, Japan.

出版信息

Biol Reprod. 2009 Jul;81(1):155-64. doi: 10.1095/biolreprod.108.074708. Epub 2009 Feb 18.

Abstract

Although spermatogonial stem cells (SSCs) are committed to spermatogenesis, they may also convert to an embryonic stem cell-like pluripotent state at a low frequency. Because changes in DNA methylation patterns are associated with this conversion, we examined the effect of manipulating DNA methyltransferase (Dnmt) expression on the fate of cultured SSCs, germline stem (GS) cells. Dnmt1 knockdown induced apoptosis in GS cells, which was attenuated by the loss of Trp53. In contrast, GS cells proliferated normally in vitro after Dnmt3a/Dnmt3b ablation or during Dnmt3l overexpression. However, Dnmt3a/Dnmt3b double-mutant cells showed hypomethylation in the SineB1 repetitive sequence, and Dnmt3l-overexpressing cells showed hypermethylation in major and minor satellite sequences; neither cell type formed teratomas and completed spermatogenesis following transplantation into the seminiferous tubules. Although genetic manipulation did not increase the conversion of GS cells to a pluripotent state, these results underscore the important role of DNMTs in survival and spermatogenic differentiation in SSCs.

摘要

尽管精原干细胞(SSCs)致力于精子发生,但它们也可能以低频率转化为胚胎干细胞样的多能状态。由于DNA甲基化模式的变化与这种转化相关,我们研究了操纵DNA甲基转移酶(Dnmt)表达对培养的SSCs即生殖系干细胞(GS细胞)命运的影响。Dnmt1基因敲低诱导GS细胞凋亡,而Trp53缺失可减弱这种凋亡。相反,在Dnmt3a/Dnmt3b缺失后或Dnmt3l过表达期间,GS细胞在体外正常增殖。然而,Dnmt3a/Dnmt3b双突变细胞在SineB1重复序列中表现出低甲基化,而Dnmt3l过表达细胞在主要和次要卫星序列中表现出高甲基化;这两种细胞类型在移植到生精小管后均未形成畸胎瘤并完成精子发生。尽管基因操作并未增加GS细胞向多能状态的转化,但这些结果强调了DNMTs在SSCs存活和生精分化中的重要作用。

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