Tan Joseph-Anthony T, Sun Yujie, Song Jing, Chen Yuan, Krontiris Theodore G, Durrin Linda K
Division of Molecular Medicine, Division of Immunology, and Graduate School of Biological Sciences, Beckman Research Institute of the City of Hope Medical Center, Duarte, CA 91010, USA.
J Biol Chem. 2008 Jun 27;283(26):18124-34. doi: 10.1074/jbc.M800512200. Epub 2008 Apr 11.
SATB1 (special AT-rich sequence-binding protein-1) provides a key link between DNA loop organization, chromatin modification/remodeling, and association of transcription factors at matrix attachment regions (MARs). To investigate the role of SATB1 in cellular events, we performed a yeast two-hybrid screen that identified SUMO-1, Ubc9, and protein inhibitor of activated STAT (PIAS) family members as SATB1 interaction partners. These proteins, working in concert, enhanced SUMO conjugation to lysine-744 of SATB1. Overexpression of SUMO or PIAS in Jurkat cells, which express high levels of endogenous SATB1, exhibited enhanced caspase cleavage of this MAR-associating protein. Sumoylation-deficient SATB1 (SATB1(K744R)) failed to display the characteristic caspase cleavage pattern; however, fusion of SUMO in-frame to SATB1(K744R) restored cleavage. A SUMO-independent interaction of inactive caspase-6 and SATB1 was noted. A subset of total cellular SATB1 localized into promyelocytic leukemia nuclear bodies where enhanced SATB1 cleavage was detected subsequent to caspase activation. These results reveal a novel sumoylation-directed caspase cleavage of this key regulatory molecule. The role of regulated proteolysis of SATB1 may be to control transcription in immune cells during normal cell functions or to assist in efficient and rapid clearance of nonfunctional or potentially damaging immune cells.
SATB1(富含AT序列的特殊结合蛋白1)在DNA环组织、染色质修饰/重塑以及转录因子在基质附着区域(MARs)的结合之间提供了关键联系。为了研究SATB1在细胞事件中的作用,我们进行了酵母双杂交筛选,鉴定出SUMO-1、Ubc9和活化STAT蛋白抑制剂(PIAS)家族成员为SATB1的相互作用伙伴。这些蛋白协同作用,增强了SUMO与SATB1赖氨酸-744的缀合。在表达高水平内源性SATB1的Jurkat细胞中过表达SUMO或PIAS,显示出这种与MAR相关蛋白的半胱天冬酶切割增强。SUMO化缺陷的SATB1(SATB1(K744R))未能显示出特征性的半胱天冬酶切割模式;然而,将SUMO读框融合到SATB1(K744R)可恢复切割。注意到无活性的半胱天冬酶-6与SATB1存在SUMO非依赖性相互作用。总的细胞SATB1的一个亚集定位于早幼粒细胞白血病核体,在半胱天冬酶激活后检测到SATB1切割增强。这些结果揭示了这种关键调节分子的一种新的SUMO化导向的半胱天冬酶切割。SATB1的调节性蛋白水解作用可能是在正常细胞功能期间控制免疫细胞中的转录,或协助有效快速清除无功能或潜在有害的免疫细胞。