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微管蛋白-GDP-磷酸亚基对微管的稳定作用。

Stabilization of microtubules by tubulin-GDP-Pi subunits.

作者信息

Caplow M, Ruhlen R, Shanks J, Walker R A, Salmon E D

机构信息

Department of Biochemistry, University of North Carolina, Chapel Hill 27599-7260.

出版信息

Biochemistry. 1989 Oct 3;28(20):8136-41. doi: 10.1021/bi00446a026.

Abstract

Microtubule dynamic instability has been accounted for by assuming that tubulin subunits at microtubule ends differ from the tubulin-GDP subunits that constitute the bulk of the microtubule. It has been suggested that this heterogeneity results because ends contain tubulin subunits that have not yet hydrolyzed an associated GTP molecule. Alternatively, in a recent model it was proposed that ends contain tubulin-GDP-Pi subunits from which Pi has not yet dissociated. The models differ in their predicted response to added ligands: because GDP in subunits in microtubules does not exchange with nucleotide in solution, the heterogeneity from a tubulin-GTP cap will not be eliminated by added GTP; however, the dissociability of Pi in tubulin-GDP-Pi subunits will allow a heterogeneity resulting from a tubulin-GDP-Pi cap to be eliminated by added excess Pi. Elimination of the heterogeneity is expected to be manifested by an elimination of dynamic instability behavior. Using video microscopy to study the kinetic behavior of individual microtubules under reaction conditions where dynamic instability is the dominant mechanism for microtubule length changes, we have determined the effects of 0.167 M Pi on the rate of subunit addition in the elongation phase, the rate of subunit dissociation in the rapid shortening phase, and the rates of the phase transitions from elongation to rapid shortening and from rapid shortening to growing. Since 0.167 M Pi did not decrease the subunit dissociation rate in the rapid shortening phase or the rate of the phase transition from growing to rapid shortening, our results provide no support for the hypothesis that tubulin-GDP-Pi subunits are responsible for dynamic instability behavior of microtubules.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

微管动态不稳定性被认为是由于微管末端的微管蛋白亚基不同于构成微管主体的微管蛋白 - GDP亚基。有人提出这种异质性的产生是因为末端含有尚未水解相关GTP分子的微管蛋白亚基。另外,在最近的一个模型中,有人提出末端含有尚未解离Pi的微管蛋白 - GDP - Pi亚基。这些模型在预测对添加配体的反应方面有所不同:由于微管中亚基中的GDP不会与溶液中的核苷酸交换,添加GTP不会消除微管蛋白 - GTP帽产生的异质性;然而,微管蛋白 - GDP - Pi亚基中Pi的可解离性将使微管蛋白 - GDP - Pi帽产生的异质性能够被添加的过量Pi消除。异质性的消除预计会表现为动态不稳定性行为的消除。利用视频显微镜研究在动态不稳定性是微管长度变化的主要机制的反应条件下单个微管的动力学行为,我们确定了0.167 M Pi对伸长阶段亚基添加速率、快速缩短阶段亚基解离速率以及从伸长到快速缩短和从快速缩短到生长的相变速率的影响。由于0.167 M Pi没有降低快速缩短阶段的亚基解离速率或从生长到快速缩短的相变速率,我们的结果不支持微管蛋白 - GDP - Pi亚基负责微管动态不稳定性行为的假设。(摘要截短于250字)

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