Duc Céline, Benoit Matthias, Détourné Gwénaëlle, Simon Lauriane, Poulet Axel, Jung Matthieu, Veluchamy Alaguraj, Latrasse David, Le Goff Samuel, Cotterell Sylviane, Tatout Christophe, Benhamed Moussa, Probst Aline V
GReD, Université Clermont Auvergne, CNRS, INSERM, 63001 Clermont-Ferrand, France.
The Sainsbury Laboratory, University of Cambridge, Cambridge CB2 1LR, United Kingdom.
Plant Cell. 2017 Jul;29(7):1773-1793. doi: 10.1105/tpc.16.00877. Epub 2017 Jul 6.
Histones are essential components of the nucleosome, the major chromatin subunit that structures linear DNA molecules and regulates access of other proteins to DNA. Specific histone chaperone complexes control the correct deposition of canonical histones and their variants to modulate nucleosome structure and stability. In this study, we characterize the Alpha Thalassemia-mental Retardation X-linked (ATRX) ortholog and show that ATRX is involved in histone H3 deposition. Arabidopsis ATRX mutant alleles are viable, but show developmental defects and reduced fertility. Their combination with mutants of the histone H3.3 chaperone HIRA (Histone Regulator A) results in impaired plant survival, suggesting that HIRA and ATRX function in complementary histone deposition pathways. Indeed, ATRX loss of function alters cellular histone H3.3 pools and in consequence modulates the H3.1/H3.3 balance in the cell. H3.3 levels are affected especially at genes characterized by elevated H3.3 occupancy, including the 45S ribosomal DNA (45S rDNA) loci, where loss of ATRX results in altered expression of specific 45S rDNA sequence variants. At the genome-wide scale, our data indicate that ATRX modifies gene expression concomitantly to H3.3 deposition at a set of genes characterized both by elevated H3.3 occupancy and high expression. Together, our results show that ATRX is involved in H3.3 deposition and emphasize the role of histone chaperones in adjusting genome expression.
组蛋白是核小体的重要组成部分,核小体是主要的染色质亚基,它构建线性DNA分子并调节其他蛋白质与DNA的结合。特定的组蛋白伴侣复合物控制着标准组蛋白及其变体的正确沉积,以调节核小体的结构和稳定性。在本研究中,我们对X连锁的α地中海贫血-智力迟钝(ATRX)直系同源物进行了表征,并表明ATRX参与组蛋白H3的沉积。拟南芥ATRX突变等位基因是可行的,但表现出发育缺陷和育性降低。它们与组蛋白H3.3伴侣HIRA(组蛋白调节因子A)的突变体结合会导致植物存活率受损,这表明HIRA和ATRX在互补的组蛋白沉积途径中发挥作用。事实上,ATRX功能丧失会改变细胞中的组蛋白H3.3库,进而调节细胞中的H3.1/H3.3平衡。H3.3水平尤其在以H3.3占有率升高为特征的基因中受到影响,包括45S核糖体DNA(45S rDNA)位点,在这些位点上,ATRX的缺失会导致特定45S rDNA序列变体的表达改变。在全基因组范围内,我们的数据表明,ATRX在一组以H3.3占有率升高和高表达为特征的基因上,与H3.3沉积同时改变基因表达。总之,我们的结果表明ATRX参与H3.3沉积,并强调了组蛋白伴侣在调节基因组表达中的作用。