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核定位对酵母Ulp2 SUMO蛋白酶功能的重要作用。

Essential role of nuclear localization for yeast Ulp2 SUMO protease function.

作者信息

Kroetz Mary B, Su Dan, Hochstrasser Mark

机构信息

Department of Cell Biology, Yale University, New Haven, CT 06520-8114, USA.

出版信息

Mol Biol Cell. 2009 Apr;20(8):2196-206. doi: 10.1091/mbc.e08-10-1090. Epub 2009 Feb 18.

Abstract

The SUMO protein is covalently attached to many different substrates throughout the cell. This modification is rapidly reversed by SUMO proteases. The Saccharomyces cerevisiae SUMO protease Ulp2 is a nuclear protein required for chromosome stability and cell cycle restart after checkpoint arrest. Ulp2 is related to the human SENP6 protease, also a nuclear protein. All members of the Ulp2/SENP6 family of SUMO proteases have large but poorly conserved N-terminal domains (NTDs) adjacent to the catalytic domain. Ulp2 also has a long C-terminal domain (CTD). We show that CTD deletion has modest effects on yeast growth, but poly-SUMO conjugates accumulate. In contrast, the NTD is essential for Ulp2 function and is required for nuclear targeting. Two short, widely separated sequences within the NTD confer nuclear localization. Efficient Ulp2 import into the nucleus requires the beta-importin Kap95, which functions on classical nuclear-localization signal (NLS)-bearing substrates. Remarkably, replacement of the entire >400-residue NTD by a heterologous NLS results in near-normal Ulp2 function. These data demonstrate that nuclear localization of Ulp2 is crucial in vivo, yet only small segments of the NTD provide the key functional elements, explaining the minimal sequence conservation of the NTDs in the Ulp2/SENP6 family of enzymes.

摘要

SUMO蛋白在整个细胞中与许多不同的底物共价连接。这种修饰可被SUMO蛋白酶迅速逆转。酿酒酵母SUMO蛋白酶Ulp2是一种核蛋白,是染色体稳定性和检查点停滞后细胞周期重启所必需的。Ulp2与人类SENP6蛋白酶相关,后者也是一种核蛋白。Ulp2/SENP6家族的SUMO蛋白酶的所有成员在催化结构域附近都有大但保守性差的N端结构域(NTD)。Ulp2也有一个长的C端结构域(CTD)。我们发现CTD缺失对酵母生长有适度影响,但多聚SUMO缀合物会积累。相比之下,NTD对Ulp2功能至关重要,是核定位所必需的。NTD内两个短的、相距很远的序列赋予核定位功能。Ulp2高效导入细胞核需要β-输入蛋白Kap95,它作用于携带经典核定位信号(NLS) 的底物。值得注意的是,用异源NLS替换整个>400个残基的NTD会导致Ulp2功能接近正常。这些数据表明,Ulp2的核定位在体内至关重要,但NTD只有小片段提供关键功能元件,这解释了Ulp2/SENP6家族酶中NTD的最小序列保守性。

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