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从海胆卵(多色刺海胆)中分离出的对钙敏感的有丝分裂纺锤体。

Calcium-labile mitotic spindles isolated from sea urchin eggs (Lytechinus variegatus).

作者信息

Salmon E D, Segall R R

出版信息

J Cell Biol. 1980 Aug;86(2):355-65. doi: 10.1083/jcb.86.2.355.

Abstract

We isolated calcium-labile mitotic spindles from eggs of the sea urchin Lytechinus variegatus, using a low ionic strength, EGTA lysis buffer that contined 5.0 mM EGTA, 0.5 mM MgCl2, 10-50 mM PIPES, pH 6.8, with 1% Nonidet P-40 (detergent) and 20-25% glycerol. Isolated spindles were stored in EGTA buffer with 50% glycerol for 5-6 wk without deterioration. The isolated spindles were composed primarily of microtubules with the chromosomes attached. No membranes were seen. Isolated spindles, perfused with EGTA buffer to remove the detergent and glycerol, had essentially the same birefringent retardation (BR) as spindles in vivo at the same mitotic stage. Even in the absence of glycerol and exogenous tubulin, the isolated spindles were relatively stable in the EGTA buffer: BR decayed slowly to about half the initial value within 30-45 min. However, both the rate and extent of BR decay increased with concentrations of Ca2+ above 0.2-0.5 muM as assayed using Ca-EGTA buffers (0.2 mM EGTA, 0.5 mM MgCl2, 50 mM PIPES, pH 6.8, plus various amounts of CaCl2). Microtubules depolymerized almost completely in < 6 min at Ca2+ concentrations of 2 muM and within several seconds at 10 muM Ca2+. Of several divalent cations tested, only Sr2+ caused comparable changes in BR. The absence of membranes in the isolated spindles appeared to be associated with a lack of calcium-sequestering ability. Our results suggest that calcium ions play an important role in the depolymerization of spindle microtubules and that membrane components may function within the mitotic apparatus of living cells to sequester and release calcium ions during mitosis.

摘要

我们使用低离子强度的EGTA裂解缓冲液从海胆(Lytechinus variegatus)卵中分离出对钙敏感的有丝分裂纺锤体,该缓冲液含有5.0 mM EGTA、0.5 mM MgCl2、10 - 50 mM PIPES(pH 6.8)、1%的诺乃洗涤剂P - 40(去污剂)和20 - 25%的甘油。分离出的纺锤体保存在含有50%甘油的EGTA缓冲液中5 - 6周而不降解。分离出的纺锤体主要由附着有染色体的微管组成,未观察到膜结构。用EGTA缓冲液灌注分离出的纺锤体以去除去污剂和甘油后,其双折射延迟(BR)与处于相同有丝分裂阶段的体内纺锤体基本相同。即使在没有甘油和外源微管蛋白的情况下,分离出的纺锤体在EGTA缓冲液中也相对稳定:BR在30 - 45分钟内缓慢衰减至初始值的约一半。然而,使用Ca - EGTA缓冲液(0.2 mM EGTA、0.5 mM MgCl2、50 mM PIPES,pH 6.8,外加不同量的CaCl2)测定时,当Ca2+浓度高于0.2 - 0.5 μM时,BR衰减的速率和程度均增加。在2 μM的Ca2+浓度下,微管在不到6分钟内几乎完全解聚,在10 μM Ca2+浓度下在几秒钟内就完全解聚。在测试的几种二价阳离子中,只有Sr2+引起了类似的BR变化。分离出的纺锤体中不存在膜似乎与缺乏钙螯合能力有关。我们的结果表明,钙离子在纺锤体微管的解聚中起重要作用,并且膜成分可能在活细胞的有丝分裂装置中发挥作用,在有丝分裂期间螯合和释放钙离子。

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