Prasad V, Jordan M A, Ludueña R F
Department of Biochemistry, University of Texas Health Science Center, San Antonio 78284-7760.
J Protein Chem. 1992 Oct;11(5):509-15. doi: 10.1007/BF01025028.
The antitumor drug vinblastine has been a useful probe for examining the interaction of tubulin with the microtubule-associated proteins (MAPs), specifically with tau and MAP 2. Although tau and MAP 2 can stimulate microtubule assembly in vitro, their specific interactions with tubulin are known to differ. For example, in the presence of vinblastine, both tau and MAP 2 cause tubulin to form spirals, but tau causes formation of clustered spirals of high turbidity, while MAP 2 causes formation of loose spirals of low turbidity [Ludueña et al., J. Biol. Chem. 259, 12890-12898 (1984)]. Although cold temperatures can inhibit microtubule assembly, cold has no effect on vinblastine-induced tubulin spiral formation. Consequently, we used the vinblastine-tubulin system to examine the interactions of tau and MAP 2 with tubulin at low temperatures. We found that tau-tubulin-vinblastine complexes form about as well at 0 degree C as at 37 degrees C. In contrast, MAP 2-tubulin-vinblastine complexes form much less well at 0 degrees C than at 37 degrees C. We find, however, that MAP 2, at 0 degrees C, will strongly inhibit, and even reverse, formation of the tau-tubulin-vinblastine complex. This suggests that the temperature-sensitive factor is the MAP 2-stimulated tubulin-tubulin interaction rather than the MAP 2-tubulin interaction per se; this raises the possibility that the tubulin-tubulin interactions stimulated by tau differ in their temperature sensitivity from those stimulated by MAP 2.
抗肿瘤药物长春碱一直是研究微管蛋白与微管相关蛋白(MAPs)相互作用,特别是与tau蛋白和MAP 2相互作用的有用探针。尽管tau蛋白和MAP 2在体外可刺激微管组装,但已知它们与微管蛋白的具体相互作用有所不同。例如,在长春碱存在的情况下,tau蛋白和MAP 2都会使微管蛋白形成螺旋结构,但tau蛋白会导致形成高浊度的聚集螺旋,而MAP 2会导致形成低浊度的松散螺旋[Ludueña等人,《生物化学杂志》259,12890 - 12898(1984)]。尽管低温可抑制微管组装,但低温对长春碱诱导的微管蛋白螺旋形成没有影响。因此,我们利用长春碱 - 微管蛋白系统来研究tau蛋白和MAP 2在低温下与微管蛋白的相互作用。我们发现,tau - 微管蛋白 - 长春碱复合物在0℃时的形成情况与在37℃时大致相同。相比之下,MAP 2 - 微管蛋白 - 长春碱复合物在0℃时的形成情况比在37℃时差得多。然而,我们发现,在0℃时,MAP 2会强烈抑制甚至逆转tau - 微管蛋白 - 长春碱复合物的形成。这表明温度敏感因素是MAP 2刺激的微管蛋白 - 微管蛋白相互作用,而不是MAP 2 - 微管蛋白相互作用本身;这增加了tau蛋白刺激的微管蛋白 - 微管蛋白相互作用在温度敏感性上与MAPs 2刺激的相互作用不同的可能性。