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粟酒裂殖酵母对低温敏感的核分裂阻滞突变体。

Cold-sensitive nuclear division arrest mutants of the fission yeast Schizosaccharomyces pombe.

作者信息

Toda T, Umesono K, Hirata A, Yanagida M

出版信息

J Mol Biol. 1983 Aug 5;168(2):251-70. doi: 10.1016/s0022-2836(83)80017-5.

Abstract

Thirteen recessive cold sensitive nuclear division arrest mutants were isolated from the fission yeast Schizosaccharomyces pombe. Twelve unlinked genes were defined; six in chromosome I, three in chromosome II and two in chromosome III. The map positions of three nuclear division arrest genes (nda1, nda2 and nda3) in chromosome II were determined precisely. Together with the previously obtained temperature-sensitive cell division cycle mutations, at least 20 genes appear to control the nuclear division of the fission yeast. Physiological studies indicated that most cold sensitive nda mutants incubated previously at 22 degrees C proceeded with a synchronously normal cell-cycle after temperature shift-up. The morphology of the nuclei and nuclear chromatin region was studied by the 4',6-diamidino-2-phenylindole staining method and by electron microscopy. Each mutant exhibited characteristic nuclear morphology at 22 degrees C, showing the specific blockages. The nda genes seem to control a pathway of structural alterations in the nuclear chromatin region with the order hemisphere, condensed ellipsoid, segregating U-form and separating hemispheres. Two genes, nda2 and nda3, pleiotropically control nuclear division, nuclear location and cell shape. The terminal phenotype of nda2-KM52 is characterized by the nuclear displacement, the absence of a spindle and abnormal locations of spindle pole bodies. The cells of nda3-KM311 were aberrant in shape and contained a partially separated chromatin region with a long spindle. Together with the results of the accompanying paper, we conclude that nda2 and nda3 genes control nuclear and cytoplasmic microtubular organization.

摘要

从裂殖酵母粟酒裂殖酵母中分离出13个隐性冷敏感核分裂停滞突变体。确定了12个不连锁的基因;6个在染色体I上,3个在染色体II上,2个在染色体III上。精确确定了染色体II上三个核分裂停滞基因(nda1、nda2和nda3)的图谱位置。连同先前获得的温度敏感型细胞分裂周期突变,至少20个基因似乎控制着裂殖酵母的核分裂。生理学研究表明,大多数先前在22℃下培养的冷敏感nda突变体在温度上调后进行同步正常的细胞周期。通过4',6-二脒基-2-苯基吲哚染色法和电子显微镜研究了细胞核和核染色质区域的形态。每个突变体在22℃时都表现出特征性的核形态,显示出特定的阻滞。nda基因似乎控制着核染色质区域结构改变的一条途径,顺序为半球形、凝聚椭圆形、分离的U形和分离的半球形。两个基因nda2和nda3多效性地控制核分裂、核定位和细胞形状。nda2-KM52的终末表型特征是核移位、无纺锤体和纺锤极体位置异常。nda3-KM311的细胞形状异常,含有一个带有长纺锤体的部分分离的染色质区域。连同随附论文的结果,我们得出结论,nda2和nda3基因控制核和细胞质微管组织。

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