Okada Yuki, Tateishi Keisuke, Zhang Yi
Howard Hughes Medical Institute, Department of Biochemistry and Biophysics, Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA.
J Androl. 2010 Jan-Feb;31(1):75-8. doi: 10.2164/jandrol.109.008052. Epub 2009 Oct 29.
Recent studies indicate that histone lysine methylation is subject to enzyme-catalyzed reversion, and jumonji C (JmjC) domain-containing proteins have been identified as one of the members of histone demethylases. Although an increasing number of histone demethylases have been identified and biochemically characterized, their biological functions are poorly characterized. To elucidate the physiological functions, we generated the knockout mouse model of dimethylated or monomethylated histone 3 lysine 9 (H3K9me2/1)-specific JmjC domain-containing histone demethylase 2A (JHDM2A; also known as JMJD1A and KDM3A) and showed that JHDM2A is essential for spermatogenesis. Jhdm2a-deficient mice exhibited impaired postmeiotic chromatin condensation, which caused infertility, even though the hormonal levels were maintained. Further molecular and biochemical analysis revealed that JHDM2A directly bound to the core promoter regions of transition nuclear protein 1 (Tnp1) and protamine 1 (Prm1) genes, and it induced the transcriptional activation of these genes by removing H3K9 methylation, which is known as a silencing marker of gene transcription. This work uncovered a role for JHDM2A in spermatogenesis and identified 2 downstream genes that are critical for sperm nuclear condensation. In addition, we also showed that JHDM2A plays a role in regulating fat metabolic gene expression in muscle and brown fat tissue, and the knockout mice exhibited obesity and hyperlipidemia. Thus, JHDM2A possesses organ/tissue-specific target genes, and impairment of this molecule cannot be compensated by other JmjC-containing histone demethylases, suggesting the importance of this molecule in vivo.
最近的研究表明,组蛋白赖氨酸甲基化可被酶催化逆转,含jumonji C(JmjC)结构域的蛋白质已被鉴定为组蛋白去甲基化酶成员之一。尽管已鉴定出越来越多的组蛋白去甲基化酶并对其进行了生化特性分析,但其生物学功能仍知之甚少。为了阐明其生理功能,我们构建了特异性针对二甲基化或单甲基化组蛋白H3赖氨酸9(H3K9me2/1)的含JmjC结构域的组蛋白去甲基化酶2A(JHDM2A;也称为JMJD1A和KDM3A)基因敲除小鼠模型,结果表明JHDM2A对精子发生至关重要。Jhdm2a基因敲除小鼠表现出减数分裂后染色质凝聚受损,尽管激素水平维持正常,但仍导致不育。进一步的分子和生化分析表明,JHDM2A直接与过渡性核蛋白1(Tnp1)和鱼精蛋白1(Prm1)基因的核心启动子区域结合,并通过去除H3K9甲基化诱导这些基因的转录激活,H3K9甲基化是已知的基因转录沉默标记。这项研究揭示了JHDM2A在精子发生中的作用,并鉴定出2个对精子核凝聚至关重要的下游基因。此外,我们还表明JHDM2A在调节肌肉和棕色脂肪组织中的脂肪代谢基因表达中发挥作用,基因敲除小鼠表现出肥胖和高脂血症。因此,JHDM2A拥有器官/组织特异性靶基因,该分子的缺陷不能被其他含JmjC结构域的组蛋白去甲基化酶所补偿,这表明该分子在体内的重要性。