Cammas Florence, Janoshazi Agnes, Lerouge Thierry, Losson Régine
Institut de Génétique et de Biologie Moléculaire et Cellulaire, CNRS/INSERM/ULP/Collège de France, BP10142, 67404 Illkirch-Cedex, France.
Differentiation. 2007 Sep;75(7):627-37. doi: 10.1111/j.1432-0436.2007.00166.x. Epub 2007 Mar 23.
Cell differentiation is a multi-step process marked by progressive silencing of gene expression through mechanisms believed to involve heterochromatin. We have previously shown that interaction between the Krüppel associated box-containing zinc finger proteins (KRAB-ZFP) corepressor TIF1beta and the heterochromatin proteins HP1 is essential for progression through differentiation of embryonal carcinoma F9 cells. This analysis clearly demonstrated the link between gene specific repressors, components of heterochromatin and cell differentiation. In mammals, there are three HP1 isotypes, HP1alpha, beta, and gamma, that appear to be involved in both eu- and heterochromatin, but whose individual functions are still poorly defined. Therefore, the aim of the present study was to determine in vivo (i) which HP1 isotypes interact with TIF1beta, (ii) in which sub-nuclear compartments these interactions occur and (iii) whether these interactions are regulated during cell differentiation. To address these questions, we established stable F9 cell lines co-expressing TIF1beta fused to the ECFP fluorophore and HP1alpha, beta, or gamma fused to the EYFP fluorophore. Using the Föster resonance energy transfer (FRET) technology, we map the physical interaction between TIF1beta-CFP and the different HP1-YFP isotypes in living F9 cells. We demonstrate that in non-differentiated cells, TIF1beta-CFP/HP1-YFP interaction occurs only within euchromatin and involves selectively HP1beta-YFP and HP1gamma-YFP, but not HP1alpha-YFP. Furthermore, in differentiated cells, TIF1beta-CFP selectively associates with HP1beta-YFP within heterochromatin, while TIF1beta-CFP/HP1gamma-YFP is exclusively present within euchromatin. No physical TIF1beta-CFP/HP1alpha-YFP interaction is detected in neither non differentiated nor differentiated cells. These results support the notion that, in vivo, HP1 isotypes have specific nonredundant functions and provide evidence for HP1beta playing an essential role in the shuttling of TIF1beta from eu- to heterochromatin during cell differentiation.
细胞分化是一个多步骤过程,其特征是通过被认为涉及异染色质的机制使基因表达逐渐沉默。我们之前已经表明,含Krüppel相关盒的锌指蛋白(KRAB-ZFP)共抑制因子TIF1β与异染色质蛋白HP1之间的相互作用对于胚胎癌细胞F9的分化进程至关重要。该分析清楚地证明了基因特异性抑制因子、异染色质成分与细胞分化之间的联系。在哺乳动物中,有三种HP1同种型,即HP1α、β和γ,它们似乎都参与常染色质和异染色质的形成,但其各自的功能仍不清楚。因此,本研究的目的是在体内确定:(i)哪些HP1同种型与TIF1β相互作用;(ii)这些相互作用发生在哪些亚核区室;(iii)这些相互作用在细胞分化过程中是否受到调控。为了解决这些问题,我们建立了稳定的F9细胞系,共表达与ECFP荧光团融合的TIF1β和与EYFP荧光团融合的HP1α、β或γ。利用荧光共振能量转移(FRET)技术,我们绘制了活的F9细胞中TIF1β-CFP与不同HP1-YFP同种型之间的物理相互作用图谱。我们证明,在未分化细胞中,TIF1β-CFP/HP1-YFP相互作用仅发生在常染色质内,且选择性地涉及HP1β-YFP和HP1γ-YFP,而不涉及HP1α-YFP。此外,在分化细胞中,TIF1β-CFP在异染色质内选择性地与HP1β-YFP结合,而TIF1β-CFP/HP1γ-YFP仅存在于常染色质内。在未分化和分化细胞中均未检测到TIF1β-CFP/HP1α-YFP的物理相互作用。这些结果支持了这样一种观点,即在体内,HP1同种型具有特定的非冗余功能,并为HP1β在细胞分化过程中TIF1β从常染色质向异染色质的穿梭中发挥重要作用提供了证据。