Institute of Biophysics, Academy of Sciences of the Czech Republic, v.v.i., Královopolská 135, CZ-612 65 Brno, Czech Republic.
J Mol Biol. 2011 Jan 21;405(3):679-95. doi: 10.1016/j.jmb.2010.11.001. Epub 2010 Nov 10.
We have studied JMJD2b histone demethylase, which antagonizes H3K9me3 in the pericentromeric heterochromatin. In cells with a deficiency in the histone methyltransferase SUV39h, the level of full-length JMJD2b (JMJD2b-GFP-1086) at chromocenters was reduced, corresponding to a global decrease in JMJD2b and H3K9me3. In wild-type fibroblasts, the chromatin of ribosomal genes, which is dense with H3K9 methylation, lacked JMJD2b-GFP-1086, while mutant and truncated forms of JMJD2b densely occupied the nucleolar compartment. This implies that the PHD Zn-fingers and Tudor domains, which were removed in truncated JMJD2b, are responsible for the aberrant JMJD2b function. Intriguingly, the JMJD2b-GFP-1086 level was significantly higher in tumor cell nucleoli. The kinetic properties of JMJD2b-GFP-1086 in the nucleoli and nucleoplasm of normal and tumor cells were similar; ∼50% recovery of prebleached intensity was reached after <1 s. However, the mobile fraction of JMJD2b-GFP-1086 was increased in SUV39h-deficient cells. Similarly, the mobile fractions of mutant JMJD2b(1-424)H189A-GFP and truncated JMJD2b(1-424)GFP were greater than that measured for the full-length protein. We suggest that nucleoli are the site of an aberrant function of JMJD2b, the kinetic properties of which can be influenced by a mutant genetic background.
我们研究了 JMJD2b 组蛋白去甲基酶,它拮抗着着丝粒异染色质区的 H3K9me3。在组蛋白甲基转移酶 SUV39h 缺陷的细胞中,JMJD2b-GFP-1086 全长在着丝粒的水平降低,对应于 JMJD2b 和 H3K9me3 的整体减少。在野生型成纤维细胞中,富含 H3K9 甲基化的核糖体基因染色质缺乏 JMJD2b-GFP-1086,而 JMJD2b 的突变和截断形式则密集占据核仁区。这表明,在截断的 JMJD2b 中缺失的 PHD Zn 指和 Tudor 结构域,负责 JMJD2b 的异常功能。有趣的是,JMJD2b-GFP-1086 在肿瘤细胞核仁中的水平显著升高。JMJD2b-GFP-1086 在正常和肿瘤细胞的核仁与核质中的动力学特性相似;在不到 1 秒的时间内,预漂白强度的约 50%得到恢复。然而,在 SUV39h 缺陷细胞中,JMJD2b-GFP-1086 的可移动分数增加。同样,JMJD2b(1-424)H189A-GFP 突变体和截断 JMJD2b(1-424)GFP 的可移动分数大于全长蛋白的测量值。我们认为核仁是 JMJD2b 异常功能的场所,其动力学特性可受突变遗传背景的影响。