Piñon R
Chromosoma. 1979 Jan 31;70(3):337-52. doi: 10.1007/BF00328771.
The sedimentation behavior of folded chromosomes from cell-division-cycle (cdc) mutants which arrest in G1 was examined. At the restrictive temperature the folded genome of cdc 7, which arrests after spindle pole body (SPB) separation and spindle formation, cosediments with a standard g1 structure, indicating that by the cdc 7 step the g1 form of the folded genome has been assembled. In the mutant, cdc 4, which arrests before SPB separation but after SPB duplication, a standard g1 structure is not formed. cdc 4 cells, however, are able to enter G0 at the restrictive temperature, and the corresponding go structure is stable. These results indicate that the cdc 4 gene product may be involved in the development of folded genome conformation which leads to the g1 structure. Since the cdc 4 gene product is required for SPB separation, the g1 structure may be defined by an association between chromosomes and spindle components. The folded chromosomes of the "start" mutants cdc 25 and cdc 28 are unstable at the restrictive temperature. In contrast to cdc 4, neither cdc 25 nor cdc 28 are able to enter the G0 stage in a normal manner, i.e., the g0 structure is unstable at the restrictive temperature. The inference is that both the cdc 25 and cdc 28 gene products are required for the functional integrity of the folded genome at both a stage early in G1 and in the pathway to G0.
对在G1期停滞的细胞分裂周期(cdc)突变体中折叠染色体的沉降行为进行了检测。在限制温度下,cdc 7的折叠基因组在纺锤极体(SPB)分离和纺锤体形成后停滞,它与标准的G1结构一起沉降,这表明到cdc 7阶段时,折叠基因组的G1形式已经组装完成。在突变体cdc 4中,它在SPB分离之前但在SPB复制之后停滞,未形成标准的G1结构。然而,cdc 4细胞在限制温度下能够进入G0期,并且相应的G0结构是稳定的。这些结果表明,cdc 4基因产物可能参与了导致G1结构的折叠基因组构象的形成。由于SPB分离需要cdc 4基因产物,G1结构可能由染色体与纺锤体成分之间的关联来定义。“起始”突变体cdc 25和cdc 28的折叠染色体在限制温度下不稳定。与cdc 4不同,cdc 25和cdc 28都不能以正常方式进入G0期,即G0结构在限制温度下不稳定。由此推断,cdc 25和cdc 28基因产物在G1早期阶段以及通向G0的途径中对于折叠基因组的功能完整性都是必需的。