Cordycepin disrupts the microtubule networks and arrests nil 8 hamster fibroblasts at the onset of mitosis
- 1 January 1987
- journal article
- research article
- Published by Wiley in Cell Motility
- Vol. 7 (4) , 337-346
- https://doi.org/10.1002/cm.970070406
Abstract
The nucleoside analogue 3′‐deoxyadenosine (cordycepin) arrests dividing cells at the onset of mitosis in prometaphase. The microtubules in the arrested prometaphase cells depolymerize to two small asters. A minimum of 80 μg/ml cordycepin or 20 μg/ml cordycepin in combination with 2 μg/ml of the deaminase inhibitor erythro‐9‐(2‐hydroxy‐3‐nonyl) adenosine (EHNA) lo inhibit its degradation is required to see these effects. Analysis of cell extracts by high‐pressure liquid chromatography indicates that cordycepin enters the cells rapidly and is phosphorylated to 3′‐dATP. The intracellular concentration rises almost linearly from 0.7 mM after 15 min to 7 mM by 210 min. Concomitantly the ATP concentration shows a rapid drop from the 4 mM present in controls. However, the direct reduction of ATP levels does not mimic the same rapid effects of cordycepin on the microtubules. In addition, similar effects are not produced by a variety of other adenosine analogues with alterations in the 2′ and 3′ ribose positions. Although other pharmacological reagents arrest cells at the onset of mitosis, cordycepin is unusual because of the collapse of the microtubule networks to two small asters that radiate from the microtubule‐organizing center. 3′‐dATP can replace the requirement for ATP or GTP in the vitro polymerization of microtubules from microtubule protein: however, at limiting concentrations of nucleotide it requires approximately two times the concentration of 3′‐dATP as ATP to support an equivalent level of microtubule polymerization. This suggests that the effects of cordycepin in vivo may be the result of the depletion of cellular ATP pools and the altered ability of 3′dATP to substitute for ATP‐dependent reactions. Current experiments are testing this hypothesis.Keywords
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