Messiaen S, Guiard J, Aigueperse C, Fliniaux I, Tourpin S, Barroca V, Allemand I, Fouchet P, Livera G, Vernet M
CEADSV/iRCM/UMR S967 Stabilité génétique, cellules souches et radiations, Fontenay-aux-roses F-92265, France Laboratoire de développement des gonadesFontenay-aux-roses F-92265, France INSERMUMR 967, Fontenay-aux-roses F-92265, France Univ Paris DiderotSorbonne Paris cité, UMR S967, Fontenay-aux-roses F-92265, France Univ Paris-SudUMR S967, Fontenay-aux-roses F-92265, France.
CEADSV/iRTSV/Atelier de transgenèse, Grenoble F-38054 Cedex 9, France.
Reproduction. 2016 May;151(5):477-89. doi: 10.1530/REP-15-0327. Epub 2016 Feb 5.
Anti-silencing function 1 (ASF1) is an evolutionarily conserved histone H3-H4 chaperone involved in the assembly/disassembly of nucleosome and histone modification. Two paralogous genes, Asf1a and Asf1b, exist in the mouse genome. Asf1a is ubiquitously expressed and its loss causes embryonic lethality. Conversely, Asf1b expression is more restricted and has been less studied. To determine the in vivo function of Asf1b, we generated a Asf1b-deficient mouse line (Asf1b(GT(ROSA-βgeo)437)) in which expression of the lacZ reporter gene is driven by the Asf1b promoter. Analysis of β-galactosidase activity at early embryonic stages indicated a correlation between Asf1b expression and cell differentiation potential. In the gonads of both male and female, Asf1b expression was specifically detected in the germ cell lineage with a peak expression correlated with meiosis. The viability of Asf1b-null mice suggests that Asf1b is dispensable for mouse development. However, these mice showed reduced reproductive capacity compared with wild-type controls. We present evidence that the timing of meiotic entry and the subsequent gonad development are affected more severely in Asf1b-null female mice than in male mice. In female mice, in addition to subfertility related to altered gamete formation, variable defects compromising the development and/or survival of their offspring were also observed. Altogether, our data indicate the importance of Asf1b expression at the time of meiotic entry, suggesting that chromatin modifications may play a central role in this process.
抗沉默功能1(ASF1)是一种进化保守的组蛋白H3-H4伴侣蛋白,参与核小体的组装/拆卸和组蛋白修饰。小鼠基因组中存在两个同源基因,即Asf1a和Asf1b。Asf1a广泛表达,其缺失会导致胚胎致死。相反,Asf1b的表达更具局限性,且研究较少。为了确定Asf1b在体内的功能,我们构建了一种Asf1b基因缺陷小鼠品系(Asf1b(GT(ROSA-βgeo)437)),其中lacZ报告基因的表达由Asf1b启动子驱动。对早期胚胎阶段β-半乳糖苷酶活性的分析表明,Asf1b表达与细胞分化潜能之间存在相关性。在雄性和雌性性腺中,Asf1b在生殖细胞谱系中特异性表达,表达峰值与减数分裂相关。Asf1b基因敲除小鼠的存活表明Asf1b对小鼠发育并非必需。然而,与野生型对照相比,这些小鼠的生殖能力降低。我们提供的证据表明,与雄性小鼠相比,Asf1b基因敲除雌性小鼠减数分裂进入的时间以及随后的性腺发育受到的影响更严重。在雌性小鼠中,除了与配子形成改变相关的生育力低下外,还观察到影响其后代发育和/或存活的各种缺陷。总之,我们的数据表明减数分裂进入时Asf1b表达的重要性,提示染色质修饰可能在此过程中起核心作用。