Department of Biology, Washington University, St. Louis, MO 63130, USA.
Chembiochem. 2011 May 2;12(7):1084-96. doi: 10.1002/cbic.201000598. Epub 2011 Apr 5.
Drosophila melanogaster heterochromatin protein 1a (HP1a) is essential for compacted heterochromatin structure and the associated gene silencing. Its chromo shadow domain (CSD) is well known for binding to peptides that contain a PXVXL motif. Heterochromatin protein 2 (HP2) is a non-histone chromosomal protein that associates with HP1a in the pericentric heterochromatin, telomeres, and the fourth chromosome. Using NMR spectroscopy, fluorescence polarization, and site-directed mutagenesis, we identified an LCVKI motif in HP2 that binds to the HP1a CSD. The binding affinity of the HP2 fragment is approximately two orders of magnitude higher than that of peptides from PIWI (with a PRVKV motif), AF10 (with a PLVVL motif), or CG15356 (with LYPLL and LSIVA motifs). To delineate differential interactions of the HP1a CSD, we characterized its structure, backbone dynamics, and dimerization constant. We found that the dimerization constant is bracketed by the affinities of HP2 and PIWI, which dock to the same HP1a homodimer surface. This suggests that HP2, but not PIWI, interaction can drive the homodimerization of HP1a. Interestingly, the integrity of the disordered C-terminal extension (CTE) of HP1a is essential for discriminatory binding, whereas swapping the PXVXL motifs does not confer specificity. Serine phosphorylation at the peptide binding surface of the CSD is thought to regulate heterochromatin assembly. Glutamic acid substitution at these sites destabilizes HP1a dimers, but improves the interaction with both binding partners. Our studies underscore the importance of CSD dimerization and cooperation with the CTE in forming distinct complexes of HP1a.
果蝇黑色素体 1a 异染色质蛋白 (HP1a) 对于紧密的异染色质结构和相关的基因沉默是必不可少的。其染色质阴影域 (CSD) 以结合含有 PXVXL 基序的肽而闻名。异染色质蛋白 2 (HP2) 是非组蛋白染色体蛋白,它与 HP1a 一起存在于着丝粒异染色质、端粒和第四染色体中。通过 NMR 光谱、荧光偏振和定点突变,我们在 HP2 中鉴定出一个 LCVKI 基序,该基序与 HP1a 的 CSD 结合。HP2 片段的结合亲和力比来自 PIWI(具有 PRVKV 基序)、AF10(具有 PLVVL 基序)或 CG15356(具有 LYPLL 和 LSIVA 基序)的肽高两个数量级左右。为了描绘 HP1a CSD 的差异相互作用,我们对其结构、骨架动力学和二聚体常数进行了表征。我们发现二聚体常数介于 HP2 和 PIWI 的亲和力之间,PIWI 与相同的 HP1a 同源二聚体表面结合。这表明 HP2 而不是 PIWI 相互作用可以驱动 HP1a 的同源二聚化。有趣的是,HP1a 无规则 C 端延伸 (CTE) 的完整性对于区分性结合是必不可少的,而交换 PXVXL 基序并不能赋予特异性。CSD 结合表面的丝氨酸磷酸化被认为可以调节异染色质的组装。这些位点的谷氨酸取代会使 HP1a 二聚体不稳定,但会改善与两个结合伙伴的相互作用。我们的研究强调了 CSD 二聚化和与 CTE 合作在形成 HP1a 不同复合物中的重要性。