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The MAR-binding protein SATB1 orchestrates temporal and spatial expression of multiple genes during T-cell development

机译:MAR结合蛋白SATB1在T细胞发育过程中协调多个基因的时空表达

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摘要

SATB1 is expressed primarily in thymocytes and can act as a transcriptional repressor. SATB1 binds in vivo to the matrix attachment regions (MARs) of DNA, which are implicated in the loop domain organization of chromatin. The role of MAR-binding proteins in specific cell lineages is unknown. We generated SATB1-null mice to determine how SATB1 functions in the T-cell lineage. SATB1-null mice are small in size, have disproportionately small thymi and spleens, and die at 3 weeks of age. At the cellular level, multiple defects in T-cell development were observed. Immature CD3CD4CD8 triple negative (TN) thymocytes were greatly reduced in number, and thymocyte development was blocked mainly at the DP stage. The few peripheral CD4+ single positive (SP) cells underwent apoptosis and failed to proliferate in response to activating stimuli. At the molecular level, among 589 genes examined, at least 2% of genes including a proto-oncogene, cytokine receptor genes, and apoptosis-related genes were derepressed at inappropriate stages of T-cell development in SATB1-null mice. For example, IL-2Rα and IL-7Rα genes were ectopically transcribed in CD4+CD8+ double positive (DP) thymocytes. SATB1 appears to orchestrate the temporal and spatial expression of genes during T-cell development, thereby ensuring the proper development of this lineage. Our data provide the first evidence that MAR-binding proteins can act as global regulators of cell function in specific cell lineages.
机译:SATB1主要在胸腺细胞中表达,可以充当转录阻遏物。 SATB1在体内与DNA的基质附着区(MAR)结合,这与染色质的环结构域组织有关。 MAR结合蛋白在特定细胞谱系中的作用尚不清楚。我们生成了SATB1无效的小鼠,以确定SATB1如何在T细胞谱系中发挥功能。无效的SATB1小鼠体型小,胸腺和脾脏小得多,并在3周龄时死亡。在细胞水平上,观察到T细胞发育中的多个缺陷。未成熟的CD3 - CD4 - CD8 -三阴性(TN)胸腺细胞数量大大减少,胸腺细胞发育主要在DP阶段受阻。少数外周CD4 + 单阳性细胞(SP)发生凋亡,但不能响应激活刺激而增殖。在分子水平上,在被检测的589个基因中,至少有2%的基因(包括原癌基因,细胞因子受体基因和凋亡相关基因)在SATB1无效小鼠的T细胞发育的不适当阶段被抑制。例如,在CD4 + CD8 + 双阳性(DP)胸腺细胞中异位转录IL-2Rα和IL-7Rα基因。 SATB1似乎可以在T细胞发育过程中协调基因的时空表达,从而确保该谱系的正确发育。我们的数据提供了第一个证据,表明MAR结合蛋白可以充当特定细胞谱系中细胞功能的整体调节剂。

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