London School of Hygiene & Tropical Medicine, Keppel Street, London WC1E 7HT, UK.
Nucleic Acids Res. 2012 Nov 1;40(20):10150-60. doi: 10.1093/nar/gks813. Epub 2012 Aug 31.
Antigenic variation in African trypanosomes involves monoallelic expression and reversible silencing of variant surface glycoprotein (VSG) genes found adjacent to telomeres in polycistronic expression sites (ESs). We assessed the impact on ES silencing of five candidate essential chromatin-associated factors that emerged from a genome-wide RNA interference viability screen. Using this approach, we demonstrate roles in VSG ES silencing for two histone chaperones. Defects in S-phase progression in cells depleted for histone H3, or either chaperone, highlight in particular the link between chromatin assembly and DNA replication control. S-phase checkpoint arrest was incomplete, however, allowing G2/M-specific VSG ES derepression following knockdown of histone H3. In striking contrast, knockdown of anti-silencing factor 1A (ASF1A) allowed for derepression at all cell cycle stages, whereas knockdown of chromatin assembly factor 1b (CAF-1b) revealed derepression predominantly in S-phase and G2/M. Our results support a central role for chromatin in maintaining VSG ES silencing. ASF1A and CAF-1b appear to play constitutive and DNA replication-dependent roles, respectively, in the recycling and assembly of chromatin. Defects in these functions typically lead to arrest in S-phase but defective cells can also progress through the cell cycle leading to nucleosome depletion and derepression of telomeric VSG ESs.
非洲锥虫的抗原变异涉及单等位基因表达和可逆沉默,这些基因位于端粒附近的多顺反子表达位点 (ES) 中的变体表面糖蛋白 (VSG) 基因。我们评估了来自全基因组 RNA 干扰生存能力筛选的五个候选必需染色质相关因子对 ES 沉默的影响。通过这种方法,我们证明了两个组蛋白伴侣在 VSG ES 沉默中的作用。细胞中组蛋白 H3 或任一伴侣缺失导致 S 期进展缺陷,特别强调了染色质组装与 DNA 复制控制之间的联系。然而,S 期检查点阻滞不完全,允许在组蛋白 H3 敲低后 G2/M 特异性 VSG ES 去抑制。相比之下,抗沉默因子 1A (ASF1A) 的敲低允许在所有细胞周期阶段去抑制,而染色质组装因子 1b (CAF-1b) 的敲低主要在 S 期和 G2/M 期显示去抑制。我们的结果支持染色质在维持 VSG ES 沉默中的核心作用。ASF1A 和 CAF-1b 似乎分别在染色质的再循环和组装中发挥组成型和 DNA 复制依赖性作用。这些功能的缺陷通常导致 S 期停滞,但有缺陷的细胞也可以通过细胞周期进行,导致核小体耗竭和端粒 VSG ES 的去抑制。