Lee J C, Wang G X, Schickling O, Peter M E
The Ben May Institute for Cancer Research, University of Chicago, 924 E. 57th Street, Chicago, IL 60637, USA.
Apoptosis. 2005 Dec;10(6):1483-95. doi: 10.1007/s10495-005-1833-z.
DEDD, a highly conserved and ubiquitous death effector domain containing protein, exists in non, mono, and diubiquitinated forms. We previously reported that endogenous unmodified DEDD is only found in nucleoli and that mono- and diubiquitinated DEDD associate with caspase-3 in the cytosol suggesting that ubiquitination may be important to the apoptosis regulating functions of DEDD in the cytosol. We now demonstrate that many of its 16 lysine residues can serve as alternative acceptors for ubiquitination to maintain the monoubiquitination status of DEDD. A central region in DEDD (amino acids 109-305) outside the death effector domain was found to be essential for ubiquitination and/or the docking of the ubiquitination machinery. Fusion of ubiquitin to the C-terminus of DEDD to mimic monoubiquitinated DEDD relocated DEDD from nucleoli to the cytosol. This fusion protein also demonstrated a greater apoptosis potential than unmodified DEDD. Finally, we show that both mono- and polyubiquitination of DEDD can be achieved by the cellular inhibitor of apoptosis proteins 1 and 2 (cIAP-1/2). In addition, the cotransfection of DEDD with cIAP-1 or cIAP-2 results in the relocalization of the IAPs to the nucleoli. Our data suggest that monoubiquitination of DEDD regulates both its cytoplasmic localization and its proapoptotic potential and that IAP proteins can regulate DEDD's ubiquitination status.
DEDD是一种高度保守且普遍存在的含死亡效应结构域的蛋白质,以非泛素化、单泛素化和双泛素化形式存在。我们之前报道过,内源性未修饰的DEDD仅存在于核仁中,而单泛素化和双泛素化的DEDD与胞质中的半胱天冬酶-3相关联,这表明泛素化可能对DEDD在胞质中的凋亡调节功能很重要。我们现在证明,其16个赖氨酸残基中的许多都可作为泛素化的替代受体,以维持DEDD的单泛素化状态。发现DEDD中死亡效应结构域之外的一个中心区域(氨基酸109 - 305)对于泛素化和/或泛素化机制的对接至关重要。将泛素融合到DEDD的C末端以模拟单泛素化的DEDD,可使DEDD从核仁重新定位到胞质中。这种融合蛋白也显示出比未修饰的DEDD更大的凋亡潜力。最后,我们表明DEDD的单泛素化和多泛素化均可由细胞凋亡抑制蛋白1和2(cIAP - 1/2)实现。此外,将DEDD与cIAP - 1或cIAP - 2共转染会导致IAPs重新定位到核仁。我们的数据表明,DEDD的单泛素化调节其胞质定位和促凋亡潜力,并且IAP蛋白可调节DEDD的泛素化状态。