Ptak Christopher, Saik Natasha O, Wozniak Richard W
Department of Cell Biology, University of Alberta, Edmonton, Alberta, Canada T6G 2H7.
Department of Oncological Sciences, Huntsman Cancer Institute, University of Utah, Salt Lake City, UT 84112.
Mol Biol Cell. 2025 Jul 1;36(7):ar81. doi: 10.1091/mbc.E24-12-0563. Epub 2025 May 6.
The SUMOylation state of a protein depends upon antagonistic SUMO conjugation and deconjugation activities that, in , are primarily driven by the PIAS SUMO E3 ligases Siz1 and Siz2 and the SUMO isopeptidase Ulp1. Subcellular localization of these regulators determines where and when protein SUMOylation occurs. Ulp1 localizes at the nuclear basket of nuclear pore complexes (NPC), placing it at the interface of the nuclear periphery and the nucleoplasm; locales where most cellular SUMO-dependent processes occur. In cells lacking the nuclear basket component Nup60, we find that Ulp1/NPC association becomes temperature-dependent, and Ulp1/NPC dissociation at higher temperatures leads to Ulp1 proteasomal degradation. Ulp1 dissociation from NPC nuclear baskets also induces a signal that triggers Siz1 and Siz2 proteasomal degradation in a manner-dependent upon SUMOylation, SUMO chain assembly, and Ubc4-dependent ubiquitination. Ultimately, Siz protein degradation decreases cellular SUMOylation, and this reduction appears to promote cell viability under conditions where the association of Ulp1 with NPC nuclear baskets is perturbed. These observations suggest that SUMO homeostasis functions to regulate SUMO conjugate levels in direct proportion to Ulp1 levels at NPC nuclear baskets by modulating stability of the PIAS SUMO E3 ligases.
蛋白质的SUMO化状态取决于相互拮抗的SUMO缀合和解缀合活性,在细胞中,这些活性主要由PIAS SUMO E3连接酶Siz1和Siz2以及SUMO异肽酶Ulp1驱动。这些调节因子的亚细胞定位决定了蛋白质SUMO化发生的位置和时间。Ulp1定位于核孔复合体(NPC)的核篮,使其处于核周和核质的界面;这是大多数细胞SUMO依赖性过程发生的区域。在缺乏核篮成分Nup60的细胞中,我们发现Ulp1与NPC的结合变得依赖温度,并且在较高温度下Ulp1与NPC的解离会导致Ulp1被蛋白酶体降解。Ulp1从NPC核篮的解离还会引发一个信号,该信号以依赖SUMO化、SUMO链组装和Ubc4依赖性泛素化的方式触发Siz1和Siz2的蛋白酶体降解。最终,Siz蛋白的降解会降低细胞的SUMO化水平,而这种降低似乎在Ulp1与NPC核篮的结合受到干扰的条件下促进细胞活力。这些观察结果表明,SUMO稳态通过调节PIAS SUMO E3连接酶的稳定性,以与NPC核篮处的Ulp1水平成正比地调节SUMO缀合物水平。