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PNAS Plus: Casz1 controls higher-order nuclear organization in rod photoreceptors

机译:PNAS Plus:Casz1控制棒状感光器中的高级核组织

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摘要

Genome organization plays a fundamental role in the gene-expression programs of numerous cell types, but determinants of higher-order genome organization are poorly understood. In the developing mouse retina, rod photoreceptors represent a good model to study this question. They undergo a process called “chromatin inversion” during differentiation, in which, as opposed to classic nuclear organization, heterochromatin becomes localized to the center of the nucleus and euchromatin is restricted to the periphery. While previous studies showed that the lamin B receptor participates in this process, the molecular mechanisms regulating lamina function during differentiation remain elusive. Here, using conditional genetics, we show that the zinc finger transcription factor Casz1 is required to establish and maintain the inverted chromatin organization of rod photoreceptors and to safeguard their gene-expression profile and long-term survival. At the mechanistic level, we show that Casz1 interacts with the polycomb repressor complex in a splice variant-specific manner and that both are required to suppress the expression of the nuclear envelope intermediate filament lamin A/C in rods. Lamin A is in turn sufficient to regulate heterochromatin organization and nuclear position. Furthermore, we show that Casz1 is sufficient to expand and centralize the heterochromatin of fibroblasts, suggesting a general role for Casz1 in nuclear organization. Together, these data support a model in which Casz1 cooperates with polycomb to control rod genome organization, in part by silencing lamin A/C.
机译:基因组组织在众多细胞类型的基因表达程序中起着基本作用,但是对高阶基因组组织的决定因素了解甚少。在发育中的小鼠视网膜中,杆状光感受器代表了研究此问题的良好模型。它们在分化过程中经历了一个称为“染色质倒置”的过程,与经典的核组织相反,异染色质位于核的中心,而常染色质局限于外周。尽管先前的研究表明层粘连蛋白B受体参与了这一过程,但在分化过程中调控层板功能的分子机制仍然难以捉摸。在这里,使用条件遗传学,我们表明锌指转录因子Casz1是建立和维持杆感光细胞的反向染色质组织并维护其基因表达谱和长期存活所必需的。在机制水平上,我们显示Casz1以特定的剪接变体方式与多梳阻遏物复合体相互作用,并且两者都需要抑制核包膜中间细丝层粘连蛋白A / C在棒中的表达。层粘连蛋白A反过来足以调节异染色质的组织和核位置。此外,我们表明Casz1足以扩大和集中成纤维细胞的异染色质,表明Casz1在核组织中的一般作用。这些数据共同支持了一个模型,其中Casz1与polycomb协作以部分地通过沉默lamin A / C来控制杆基因组的组织。

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