Ito T, Levenstein M E, Fyodorov D V, Kutach A K, Kobayashi R, Kadonaga J T
Department of Biology and Center for Molecular Genetics, University of California, San Diego, La Jolla, California 92093-0347, USA.
Genes Dev. 1999 Jun 15;13(12):1529-39. doi: 10.1101/gad.13.12.1529.
The assembly of core histones and DNA into periodic nucleosome arrays is mediated by ACF, an ISWI-containing factor, and NAP-1, a core histone chaperone, in an ATP-dependent process. We describe the isolation of Drosophila acf1 cDNA, which encodes the p170 and p185 forms of the Acf1 protein in ACF. Acf1 is a novel protein that contains two PHD fingers, one bromodomain, and two new conserved regions. Human WSTF, which is encoded by one of multiple genes that is deleted in Williams syndrome individuals, is the only currently known mammalian protein with each of the conserved motifs in Acf1. Purification of the native form of Acf1 led to the isolation of ACF comprising Acf1 (both p170 and p185 forms) and ISWI. Native Acf1 did not copurify with components of NURF or CHRAC, which are other ISWI-containing complexes in Drosophila. Purified recombinant ACF, consisting of Acf1 (either p185 alone or both p170 and p185) and ISWI, catalyzes the deposition of histones into extended periodic nucleosome arrays. Notably, the Acf1 and ISWI subunits function synergistically in the assembly of chromatin. ISWI alone exhibits a weak activity that is approximately 3% that of ACF. These results indicate that both Acf1 and ISWI participate in the chromatin assembly process and suggest further that the Acf1 subunit confers additional functionality to the general 'motor' activity of ISWI.
核心组蛋白和DNA组装成周期性核小体阵列是由ACF(一种含ISWI的因子)和NAP-1(一种核心组蛋白伴侣)介导的,这是一个依赖ATP的过程。我们描述了果蝇acf1 cDNA的分离,它编码ACF中Acf1蛋白的p170和p185形式。Acf1是一种新型蛋白质,包含两个PHD结构域、一个溴结构域和两个新的保守区域。人类WSTF由威廉姆斯综合征个体中缺失的多个基因之一编码,是目前已知的唯一具有Acf1中每个保守基序的哺乳动物蛋白。天然形式的Acf1的纯化导致了包含Acf1(p170和p185形式)和ISWI的ACF的分离。天然Acf1没有与NURF或CHRAC的成分共纯化,NURF和CHRAC是果蝇中其他含ISWI的复合物。由Acf1(单独的p185或p170和p185两者)和ISWI组成的纯化重组ACF催化组蛋白沉积到延伸的周期性核小体阵列中。值得注意的是,Acf1和ISWI亚基在染色质组装中协同发挥作用。单独的ISWI表现出较弱的活性,约为ACF活性的3%。这些结果表明Acf1和ISWI都参与了染色质组装过程,并进一步表明Acf1亚基赋予了ISWI一般“运动”活性额外的功能。