Di Giacomo Daniele, De Domenico Emanuela, Sette Claudio, Geremia Raffaele, Grimaldi Paola
*Department of Biomedicine and Prevention, Section of Anatomy, University of Rome "Tor Vergata," Rome, Italy; and Laboratory of Neuroembryology, Fondazione Santa Lucia, Rome, Italy.
*Department of Biomedicine and Prevention, Section of Anatomy, University of Rome "Tor Vergata," Rome, Italy; and Laboratory of Neuroembryology, Fondazione Santa Lucia, Rome, Italy
FASEB J. 2016 Apr;30(4):1453-63. doi: 10.1096/fj.15-279034. Epub 2015 Dec 15.
Type 2 cannabinoid receptor (CB2) has been proposed to play a pivotal role in meiotic entry of male germ cells, similar to retinoic acid (RA). In this study, we showed that activation of CB2with the specific agonist JWH133 [3-(1',1'-dimethylbutyl)-1-deoxy-8-THC] (IC5010(-6)M) mimics epigenetic events induced by RA (IC5010(-7)M) in spermatogonia. Both JWH133 and RA treatments stimulate the expression of the meiotic genes c-KitandStra8, by up-regulating H3K4me3 and down-regulating H3K9me2 levels in genomic regions flanking the transcription start site. Moreover, both agents increase the expression ofPrdm9, the gene encoding a meiosis-specific histone, H3K4me3 methyltransferase, which marks hotspots of recombination in prophase I, thus resulting in a global increase in H3K4me3. Notably, prolonged administration of JWH133 to immature 7 dpp CD-1 mice induced an acceleration of the onset of spermatogenesis, whereas the specific CB2antagonist delayed germ cell differentiation. Thus, both hyper- and hypostimulation of CB2disrupted the temporal dynamics of the spermatogenic cycle. These findings highlight the importance of proper CB2signaling for the maintenance of a correct temporal progression of spermatogenesis and suggest a possible adverse effect of cannabis in deregulating this process.-Di Giacomo, D., De Domenico, E., Sette, C., Geremia, R., Grimaldi, P. Type 2 cannabinoid receptor contributes to the physiological regulation of spermatogenesis.
与视黄酸(RA)类似,有人提出2型大麻素受体(CB2)在雄性生殖细胞减数分裂起始过程中起关键作用。在本研究中,我们发现用特异性激动剂JWH133 [3-(1',1'-二甲基丁基)-1-脱氧-8-四氢大麻酚](IC50 10(-6)M)激活CB2可模拟RA(IC50 10(-7)M)在精原细胞中诱导的表观遗传事件。JWH133和RA处理均通过上调转录起始位点侧翼基因组区域的H3K4me3水平和下调H3K9me2水平来刺激减数分裂基因c-Kit和Stra8的表达。此外,这两种药物均增加了Prdm9的表达,Prdm9是一种编码减数分裂特异性组蛋白H3K4me3甲基转移酶的基因,该酶标记减数分裂前期I的重组热点,从而导致H3K4me3整体增加。值得注意的是,对未成熟的7日龄CD-1小鼠长期给予JWH133可加速精子发生的起始,而特异性CB2拮抗剂则延迟生殖细胞分化。因此,CB2的过度刺激和低刺激均破坏了生精周期的时间动态。这些发现突出了适当的CB2信号传导对维持精子发生正确时间进程的重要性,并提示大麻在失调这一过程中可能产生的不良影响。-迪贾科莫,D.,德多梅尼科,E.,塞特,C.,杰雷米亚,R.,格里马尔迪,P. 2型大麻素受体有助于精子发生的生理调节。