Holmfeldt Per, Brännström Kristoffer, Stenmark Sonja, Gullberg Martin
Department of Molecular Biology, Umeå University, SE-901 87 Umeå, Sweden.
Mol Biol Cell. 2006 Jul;17(7):2921-30. doi: 10.1091/mbc.e06-02-0165. Epub 2006 Apr 19.
Op18/stathmin (Op18) is a phosphorylation-regulated microtubule destabilizer that is frequently overexpressed in tumors. The importance of Op18 in malignancy was recently suggested by identification of a somatic Q18-->E mutation of Op18 in an adenocarcinoma. We addressed the functional consequences of aberrant Op18 expression in leukemias by analyzing the cell cycle of K562 cells either depleted of Op18 by expression of interfering hairpin RNA or induced to express wild-type or Q18E substituted Op18. We show here that although Op18 depletion increases microtubule density during interphase, the density of mitotic spindles is essentially unaltered and cells divide normally. This is consistent with phosphorylation-inactivation of Op18 during mitosis. Overexpression of wild-type Op18 results in aneugenic activities, manifest as aberrant mitosis, polyploidization, and chromosome loss. One particularly significant finding was that the aneugenic activity of Op18 was dramatically increased by the Q18-->E mutation. The hyperactivity of mutant Op18 is apparent in its unphosphorylated state, and this mutation also suppresses phosphorylation-inactivation of the microtubule-destabilizing activity of Op18 without any apparent effect on its phosphorylation status. Thus, although Op18 is dispensable for mitosis, the hyperactive Q18-->E mutant, or overexpressed wild-type Op18, exerts aneugenic effects that are likely to contribute to chromosomal instability in tumors.
Op18/Stathmin(Op18)是一种受磷酸化调节的微管解聚蛋白,在肿瘤中常过度表达。最近在一例腺癌中发现了Op18的体细胞Q18→E突变,提示了Op18在恶性肿瘤中的重要性。我们通过分析K562细胞的细胞周期来探讨白血病中异常Op18表达的功能后果,这些细胞要么通过表达干扰性发夹RNA使Op18缺失,要么被诱导表达野生型或Q18E替代的Op18。我们在此表明,虽然Op18缺失会增加间期微管密度,但有丝分裂纺锤体的密度基本未改变,细胞仍能正常分裂。这与有丝分裂期间Op18的磷酸化失活是一致的。野生型Op18的过表达会导致非整倍体活性,表现为异常有丝分裂、多倍体化和染色体丢失。一个特别显著的发现是,Q18→E突变使Op18的非整倍体活性显著增加。突变型Op18的过度活性在其未磷酸化状态下很明显,并且该突变还抑制了Op18微管解聚活性的磷酸化失活,而对其磷酸化状态没有任何明显影响。因此,虽然Op18对有丝分裂并非必需,但高活性的Q18→E突变体或过表达的野生型Op18会产生非整倍体效应,这可能导致肿瘤中的染色体不稳定。