West Adam G, Huang Suming, Gaszner Miklos, Litt Michael D, Felsenfeld Gary
Laboratory of Molecular Biology, NIDDK, National Institutes of Health, Bethesda, MD 20892, USA.
Mol Cell. 2004 Nov 5;16(3):453-63. doi: 10.1016/j.molcel.2004.10.005.
The chicken beta-globin 5'HS4 insulator element acts as a barrier to the encroachment of chromosomal silencing. Endogenous 5'HS4 sequences are highly enriched with histone acetylation and H3K4 methylation regardless of neighboring gene expression. We report here that 5'HS4 elements recruit these histone modifications when protecting a reporter transgene from chromosomal silencing. Deletion studies identified a single protein binding site within 5'HS4, footprint IV, that is necessary for the recruitment of histone modifications and for barrier activity. We have determined that USF proteins bind to footprint IV. USF1 is present in complexes with histone modifying enzymes in cell extracts, and these enzymes specifically interact with the endogenous 5'HS4 element. Knockdown of USF1 expression leads to a loss of histone modification recruitment and subsequent encroachment of H3K9 methylation. We propose that barrier activity requires the constitutive recruitment of H3K4 methylation and histone acetylation at multiple residues to counteract the propagation of condensed chromatin structures.
鸡β-珠蛋白5'HS4绝缘子元件可作为染色体沉默侵袭的屏障。无论相邻基因的表达情况如何,内源性5'HS4序列都高度富含组蛋白乙酰化和H3K4甲基化。我们在此报告,5'HS4元件在保护报告转基因免受染色体沉默影响时会募集这些组蛋白修饰。缺失研究确定了5'HS4内的一个单一蛋白质结合位点,即足迹IV,它是募集组蛋白修饰和发挥屏障活性所必需的。我们已确定USF蛋白与足迹IV结合。USF1存在于细胞提取物中与组蛋白修饰酶形成的复合物中,并且这些酶与内源性5'HS4元件特异性相互作用。敲低USF1表达会导致组蛋白修饰募集的丧失以及随后H3K9甲基化的侵袭。我们提出,屏障活性需要在多个残基处组成性募集H3K4甲基化和组蛋白乙酰化,以抵消浓缩染色质结构的传播。