Tzeng Tsai-Yu, Lee Chi-Hua, Chan Li-Wei, Shen C-K James
Institute of Molecular Biology, Academia Sinica, Nankang, Taipei 115, Taiwan.
Proc Natl Acad Sci U S A. 2007 Jul 31;104(31):12691-6. doi: 10.1073/pnas.0705534104. Epub 2007 Jul 25.
The polytene chromosomes of Drosophila melanogaster consist of condensed heterochromatin regions most of which are in the chromocenter, telomeres, and the fourth chromosome. Whereas suppressor of variegation 3-9 [SU(VAR)3-9], a histone methyltransferase, is mainly responsible for lysine 9 of histone H3 (H3K9) methylation of the chromocenter and consequent binding of the heterochromatin-protein HP1, the enzyme for painting of the fourth chromosome by H3K9 methylation has been elusive. We show here that dSETDB1, the Drosophila ortholog of the mammalian SETDB1, is an authentic H3K9 methyltransferase and a pleiotropic regulator of the fly's development. Drosophila mutants hypomorphic or null in dSETDB1 expression lose most of the H3K9 methylation as well as HP1-binding on the fourth chromosome. We also show that binding of painting of fourth (POF), a known fourth chromosome-specific protein, and the dSETDB1-controlled H3K9 methylation of this chromosome are interdependent. Furthermore, POF and dSETDB1 interact with each other in vivo. The deregulation of H3K9 methylation, HP1-binding, and POF-binding resulted in, on the average, a global reduction of gene expression from the fourth chromosome but not the other chromosomes. Deficiency of dSETDB1 also up-regulated the expression of HP1. These results have suggested an interactive network, as controlled in part by dSETDB1, regulating the epigenetic modification and gene expression of Drosophila chromosome 4.
黑腹果蝇的多线染色体由浓缩的异染色质区域组成,其中大部分位于染色中心、端粒和第四条染色体上。组蛋白甲基转移酶异染色质抑制因子3-9 [SU(VAR)3-9]主要负责染色中心组蛋白H3赖氨酸9(H3K9)的甲基化以及随后异染色质蛋白HP1的结合,而负责第四条染色体H3K9甲基化修饰的酶一直难以确定。我们在此表明,果蝇的dSETDB1是哺乳动物SETDB1的直系同源物,是一种真正的H3K9甲基转移酶,也是果蝇发育的多效性调节因子。dSETDB1表达减弱或缺失的果蝇突变体在第四条染色体上失去了大部分H3K9甲基化以及HP1结合。我们还表明,已知的第四条染色体特异性蛋白第四条染色体涂抹蛋白(POF)的结合与dSETDB1控制的该染色体H3K9甲基化是相互依赖的。此外,POF和dSETDB1在体内相互作用。H3K9甲基化、HP1结合和POF结合的失调平均导致第四条染色体而非其他染色体上基因表达的整体降低。dSETDB1的缺失也上调了HP1的表达。这些结果表明存在一个部分由dSETDB1控制的交互网络,调节果蝇第四条染色体的表观遗传修饰和基因表达。