Larsson N, Segerman B, Howell B, Fridell K, Cassimeris L, Gullberg M
Department of Cell and Molecular Biology, University of Umeâ, Sweden.
J Cell Biol. 1999 Sep 20;146(6):1289-302. doi: 10.1083/jcb.146.6.1289.
Oncoprotein18/stathmin (Op18) is a regulator of microtubule (MT) dynamics that binds tubulin heterodimers and destabilizes MTs by promoting catastrophes (i.e., transitions from growing to shrinking MTs). Here, we have performed a deletion analysis to mechanistically dissect Op18 with respect to (a) modulation of tubulin GTP hydrolysis and exchange, (b) tubulin binding in vitro, and (c) tubulin association and MT-regulating activities in intact cells. The data reveal distinct types of region-specific Op18 modulation of tubulin GTP metabolism, namely inhibition of nucleotide exchange and stimulation or inhibition of GTP hydrolysis. These regulatory activities are mediated via two-site cooperative binding to tubulin by multiple nonessential physically separated regions of Op18. In vitro analysis revealed that NH(2)- and COOH-terminal truncations of Op18 have opposite effects on the rates of tubulin GTP hydrolysis. Transfection of human leukemia cells with these two types of mutants result in similar decrease of MT content, which in both cases appeared independent of a simple tubulin sequestering mechanism. However, the NH(2)- and COOH-terminal-truncated Op18 mutants regulate MTs by distinct mechanisms as evidenced by morphological analysis of microinjected newt lung cells. Hence, mutant analysis shows that Op18 has the potential to regulate tubulin/MTs by more than one specific mechanism.
癌蛋白18/微管相关蛋白(Op18)是微管(MT)动力学的调节因子,它能结合微管蛋白异二聚体,并通过促进微管灾变(即从生长状态转变为收缩状态)来使微管不稳定。在此,我们进行了缺失分析,从以下几个方面对Op18进行机制剖析:(a)微管蛋白GTP水解和交换的调节;(b)体外微管蛋白结合;(c)完整细胞中微管蛋白结合及微管调节活性。数据揭示了Op18对微管蛋白GTP代谢的不同类型的区域特异性调节,即核苷酸交换抑制以及GTP水解的刺激或抑制。这些调节活性是通过Op18多个非必需的物理分离区域与微管蛋白的双位点协同结合介导的。体外分析表明,Op18的NH(2)-和COOH-末端截短对微管蛋白GTP水解速率有相反的影响。用这两种类型的突变体转染人白血病细胞会导致微管含量出现类似的下降,在这两种情况下,这种下降似乎都独立于简单的微管蛋白隔离机制。然而,通过对微注射蝾螈肺细胞的形态学分析证明,NH(2)-和COOH-末端截短的Op18突变体通过不同的机制调节微管。因此,突变分析表明Op18有可能通过不止一种特定机制调节微管蛋白/微管。