Kamitani T, Nguyen H P, Yeh E T
Division of Molecular Medicine, Department of Internal Medicine and Cardiovascular Research Center, Institute of Molecular Medicine for the Prevention of Human Diseases, The University of Texas-Houston Health Science Center, Houston, Texas 77030, USA.
J Biol Chem. 1997 May 30;272(22):14001-4. doi: 10.1074/jbc.272.22.14001.
Sentrin is a novel ubiquitin-like protein that protects cells against both anti-Fas and tumor necrosis factor-induced cell death. Antiserum recognizing the N terminus of sentrin revealed the presence of a 18-kDa sentrin monomer, a 90-kDa band (p90), and multiple high molecular mass bands. Because sentrin possesses the conserved Gly-Gly residues near the C terminus, it is likely that these additional bands represent conjugation of sentrin to other proteins in a manner that is similar to the ubiquitination pathway. Transient expression of hemagglutinin epitope-tagged sentrin mutants in COS cells demonstrated that the sentrin C terminus is cleaved, which allows it to be conjugated to other proteins via the conserved C-terminal Gly residue. Immunocytochemical staining and cell fractionation analysis demonstrated that sentrin monomer is localized predominantly to the cytosol. However, p90 and the majority of sentrinized proteins appeared to be localized to the nucleus. When the conserved Gly-Gly residues of sentrin were changed to Gly-Ala, only sentrin monomer and p90 but not the high molecular mass bands were observed. Thus, p90 generation appears to be required for the formation of high molecular mass bands in the nucleus. Taken together, sentrinization represents a novel pathway for nuclear protein modification, which is distinct from ubiquitination.
Sentrin是一种新型的类泛素蛋白,可保护细胞免受抗Fas和肿瘤坏死因子诱导的细胞死亡。识别Sentrin N端的抗血清显示存在18 kDa的Sentrin单体、一条90 kDa的条带(p90)以及多条高分子质量条带。由于Sentrin在C端附近具有保守的甘氨酸-甘氨酸残基,这些额外的条带很可能代表Sentrin以类似于泛素化途径的方式与其他蛋白质结合。在COS细胞中瞬时表达血凝素表位标记的Sentrin突变体表明,Sentrin的C端被切割,这使其能够通过保守的C端甘氨酸残基与其他蛋白质结合。免疫细胞化学染色和细胞分级分析表明,Sentrin单体主要定位于细胞质中。然而,p90和大多数Sentrin化蛋白似乎定位于细胞核中。当Sentrin保守的甘氨酸-甘氨酸残基变为甘氨酸-丙氨酸时,仅观察到Sentrin单体和p90,未观察到高分子质量条带。因此,p90的产生似乎是细胞核中高分子质量条带形成所必需的。综上所述,Sentrin化代表了一种不同于泛素化的新型核蛋白修饰途径。