Department of Environmental Medicine, New York University Langone Medical Center, 57 Old, Forge Road, Tuxedo, New York 10987, USA.
J Biol Chem. 2012 Nov 9;287(46):38600-8. doi: 10.1074/jbc.M112.391441. Epub 2012 Sep 25.
SALL4 is a transcription factor that plays a key role in the maintenance and self-renewal of embryonic stem cells and hematopoietic stem cells. Given that little is known about regulation of SALL4, we studied biochemical modifications of SALL4B, a major splicing variant of SALL4, and elucidated their biological function. SALL4B was primarily modified by ubiquitination when it was expressed in both Sf9 and HEK293T cells. A significant fraction of SALL4B was further modified by sumoylation when it was expressed in HEK293T cells. Constitutive SUMO-modification of SALL4B was also detected in Tera-1, a cell line of the teratocarcinoma origin. SALL4B sumoylation was independent of ubiquitination and lysine residues 156, 316, 374, and 401 were essential for sumoylation. Chromatin fraction contained more SUMO-deficient SALL4B. Despite a shorter half-life than the wild-type counterpart, SUMO-deficient SALL4B interacted with OCT4 more efficiently than the wild-type SALL4B. RNAi-mediated silencing of SALL4 expression caused significant down-regulation of both OCT4 and SOX2, which was rescued by ectopic expression of SALL4B but not by SUMO-deficient mutant. Significantly, compared with the wild-type SALL4B, SUMO-deficient mutant exhibited compromised trans-activation or trans-repression activities in reporter gene assays. Combined, our studies reveal sumoylation as a novel form of post-translational modification for regulating the stability, subcellular localization, and transcriptional activity of SALL4.
SALL4 是一种转录因子,在维持和自我更新胚胎干细胞和造血干细胞方面发挥着关键作用。鉴于对 SALL4 的调控知之甚少,我们研究了 SALL4 的主要剪接变体 SALL4B 的生化修饰,并阐明了它们的生物学功能。当 SALL4B 在 Sf9 和 HEK293T 细胞中表达时,它主要通过泛素化修饰。当 SALL4B 在 HEK293T 细胞中表达时,其进一步被 SUMO 修饰。在源自畸胎瘤的细胞系 Ter-1 中也检测到 SALL4B 的组成性 SUMO 修饰。SALL4B 的 SUMO 修饰不依赖于泛素化和赖氨酸残基 156、316、374 和 401,这些残基对 SUMO 修饰是必需的。染色质部分含有更多缺乏 SUMO 的 SALL4B。尽管半衰期比野生型短,但缺乏 SUMO 的 SALL4B 与 OCT4 的相互作用比野生型 SALL4B 更有效。RNAi 介导的 SALL4 表达沉默导致 OCT4 和 SOX2 的表达显著下调,但通过过表达 SALL4B 而不是缺乏 SUMO 的突变体可以挽救。重要的是,与野生型 SALL4B 相比,SUMO 缺陷型突变体在报告基因检测中的转录激活或转录抑制活性受损。综上所述,我们的研究揭示了 SUMO 化作为一种新的翻译后修饰形式,调节 SALL4 的稳定性、亚细胞定位和转录活性。