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Tubulin nucleation and assembly in mitotic cells: Evidence for nucleic acids in kinetochores and centrosomes

 

作者: Daniel A. Pepper,   B. R. Brinkley,  

 

期刊: Cell Motility  (WILEY Available online 1980)
卷期: Volume 1, issue 1  

页码: 1-15

 

ISSN:0271-6585

 

年代: 1980

 

DOI:10.1002/cm.970010102

 

出版商: Wiley Subscription Services, Inc., A Wiley Company

 

关键词: centrosomes;kinetochores;microtubule initiation;nuclease enzymes;electron microscopy

 

数据来源: WILEY

 

摘要:

AbstractA lysed cell system was used to study the organelle structure and nucleation of exogenous tubulin at kinetochores and centrosomes in mitotic PtK2cells. We have used this lysed cell system in conjunction with nuclease digestion experiments to determine which specific nucleic acids (DNA or RNA) are involved in either the structure and/or microtubule‐initiating capacity of kinetochores and centrosomes. The results indicate that DNase I specifically decondenses the kinetochore plate structure, with the eventual loss in the ability of the chromosomes to nucleate microtubule assembly. DNase I had no effect on either the structure or nucleating capacity of centrosomes. Both RNase T1and RNase A specifically attacked the amorphous pericentriolar material of the centrosomes, with a concomitant loss in the ability of this material to nucleate microtubule formation. Neither RNase appeared to affect the structure or nucleating capacity of the kinetochore. Therefore, the two types of nucleases appear to exert preferential effects on the different types of microtubule initiation sites in mitotic mammalian cells. The results suggest that DNA is a major component of the kinetochore, while RNA is a major component of the amorphous pericentriolar material. These findings support the concept that microtubule initiation sites in mitotic cells contain nucleic acids which are essential for the structural and functional integrity of the site

 

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