Canovas Pedro M, Guadagno Thomas M
Molecular Oncology Program, H. Lee Moffitt Cancer Center & Research Institute, Tampa, Florida 33612, USA.
J Cell Biochem. 2007 Jan 1;100(1):217-29. doi: 10.1002/jcb.21065.
Survivin is a member of the inhibitor of apoptosis (IAP) protein family that serves critical roles in mitosis and cytokinesis. Many studies have suggested Survivin's involvement in spindle regulation, but direct biochemical evidence for this has been lacking. Using the cell-free system of Xenopus egg extracts, we tested whether Survivin was necessary for the assembly of metaphase spindles. Removal or inhibition of Xenopus Survivin causes the disruption in the formation of metaphase spindles. In particular, we observe the generation of microtubule (MT) asters or poorly formed shortened spindle structures. In the latter phenotype the spindle structures display a decrease pole-to-pole length and a reduction of MTs around the chromatin indicating that Survivin may promote the stabilization of MT-chromatin interactions. In addition, function analysis of Survivin's conserved phosphorylation site Thr34 (Thr43 in Xenopus) and tubulin-binding domain was also assessed in regulating spindle assembly. Treatment of Xenopus egg extracts with a recombinant Survivin mutant that contained an alanine residue substitution at Thr43 (SURT43A mutant) or that was missing the C-terminal tubulin-binding domain (SURCL mutant) produced an increased frequency of MT asters and shorten abnormal spindle structures in Xenopus egg extracts. Interestingly, a phosphomimetic mutation made at residue Thr43 of Survivin (SURT43E mutant) generated a high frequency of MT asters implying that premature 'activation' of Survivin may interfere with an early stage of spindle assembly. Taken together, we propose that Survivin is a necessary component of the mitotic spindle and its phosphorylation at residue Thr43 is important for Survivin function in spindle assembly.
存活素是凋亡抑制蛋白(IAP)家族的成员,在有丝分裂和胞质分裂中发挥关键作用。许多研究表明存活素参与纺锤体调节,但一直缺乏直接的生化证据。利用非洲爪蟾卵提取物的无细胞系统,我们测试了存活素对于中期纺锤体组装是否必要。去除或抑制非洲爪蟾存活素会导致中期纺锤体形成受到破坏。具体而言,我们观察到微管星状体的产生或形成不良的缩短纺锤体结构。在后一种表型中,纺锤体结构显示极间长度减小,染色质周围的微管减少,这表明存活素可能促进微管 - 染色质相互作用的稳定。此外,还评估了存活素保守磷酸化位点苏氨酸34(非洲爪蟾中为苏氨酸43)和微管蛋白结合结构域在调节纺锤体组装中的功能。用在苏氨酸43处含有丙氨酸残基替代的重组存活素突变体(SURT43A突变体)或缺失C末端微管蛋白结合结构域的重组存活素突变体(SURCL突变体)处理非洲爪蟾卵提取物,会使提取物中微管星状体的频率增加,并产生缩短的异常纺锤体结构。有趣的是,在存活素的苏氨酸43残基处进行模拟磷酸化突变(SURT43E突变体)会产生高频率的微管星状体,这意味着存活素的过早“激活”可能会干扰纺锤体组装的早期阶段。综上所述,我们提出存活素是有丝分裂纺锤体的必要组成部分,其苏氨酸4