Reindle Alison, Belichenko Irina, Bylebyl Gwendolyn R, Chen Xiaole L, Gandhi Nishant, Johnson Erica S
Department of Biochemistry and Molecular Biology, Thomas Jefferson University, Philadelphia, PA 19107, USA.
J Cell Sci. 2006 Nov 15;119(Pt 22):4749-57. doi: 10.1242/jcs.03243. Epub 2006 Oct 31.
Saccharomyces cerevisiae contains two Siz/PIAS SUMO E3 ligases, Siz1 and Siz2/Nfi1, and one other known ligase, Mms21. Although ubiquitin ligases are highly substrate-specific, the degree to which SUMO ligases target distinct sets of substrates is unknown. Here we show that although Siz1 and Siz2 each have unique substrates in vivo, sumoylation of many substrates can be stimulated by either protein. Furthermore, in the absence of both Siz proteins, many of the same substrates are still sumoylated at low levels. Some of this residual sumoylation depends on MMS21. Siz1 targets its unique substrates through at least two distinct domains. Sumoylation of PCNA (proliferating cell nuclear antigen) and the splicing factor Prp45 requires part of the N-terminal region of Siz1, the ;PINIT' domain, whereas sumoylation of the bud neck-associated septin proteins Cdc3, Cdc11 and Shs1/Sep7 requires the C-terminal domain of Siz1, which is also sufficient for cell cycle-dependent localization of Siz1 to the bud neck. Remarkably, the non-sumoylated septins Cdc10 and Cdc12 also undergo Siz1-dependent sumoylation if they are fused to the short PsiKXE SUMO attachment-site sequence. Collectively, these results suggest that local concentration of the E3, rather than a single direct interaction with the substrate polypeptide, is the major factor in substrate selectivity by Siz proteins.
酿酒酵母含有两种Siz/PIAS类小泛素相关修饰物E3连接酶,即Siz1和Siz2/Nfi1,以及另一种已知的连接酶Mms21。尽管泛素连接酶具有高度的底物特异性,但小泛素相关修饰物连接酶靶向不同底物组的程度尚不清楚。在这里我们表明,虽然Siz1和Siz2在体内各自都有独特的底物,但许多底物的小泛素相关修饰可被任一种蛋白质刺激。此外,在两种Siz蛋白都缺失的情况下,许多相同的底物仍能进行低水平的小泛素相关修饰。这种残余的小泛素相关修饰部分依赖于MMS21。Siz1通过至少两个不同的结构域靶向其独特的底物。增殖细胞核抗原(PCNA)和剪接因子Prp45的小泛素相关修饰需要Siz1的N端区域的一部分,即“PINIT”结构域,而芽颈相关的隔膜蛋白Cdc3、Cdc11和Shs1/Sep7的小泛素相关修饰需要Siz1的C端结构域,这对于Siz1在细胞周期依赖性定位于芽颈也是足够的。值得注意的是,如果非小泛素相关修饰的隔膜蛋白Cdc10和Cdc12与短的PsiKXE小泛素相关修饰附着位点序列融合,它们也会发生依赖于Siz1的小泛素相关修饰。总的来说,这些结果表明,E3的局部浓度而非与底物多肽的单一直接相互作用是Siz蛋白选择底物的主要因素。