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Polo激酶和Mid1p在裂殖酵母细胞分裂位点确定中的作用。

Role of polo kinase and Mid1p in determining the site of cell division in fission yeast.

作者信息

Bähler J, Steever A B, Wheatley S, Wang Y l, Pringle J R, Gould K L, McCollum D

机构信息

Department of Biology, University of North Carolina, Chapel Hill, North Carolina 27599-3280, USA.

出版信息

J Cell Biol. 1998 Dec 14;143(6):1603-16. doi: 10.1083/jcb.143.6.1603.

Abstract

The fission yeast Schizosaccharomyces pombe divides symmetrically using a medial F-actin- based contractile ring to produce equal-sized daughter cells. Mutants defective in two previously described genes, mid1 and pom1, frequently divide asymmetrically. Here we present the identification of three new temperature-sensitive mutants defective in localization of the division plane. All three mutants have mutations in the polo kinase gene, plo1, and show defects very similar to those of mid1 mutants in both the placement and organization of the medial ring. In both cases, ring formation is frequently initiated near the cell poles, indicating that Mid1p and Plo1p function in recruiting medial ring components to the cell center. It has been reported previously that during mitosis Mid1p becomes hyperphosphorylated and relocates from the nucleus to a medial ring. Here we show that Mid1p first forms a diffuse cortical band during spindle formation and then coalesces into a ring before anaphase. Plo1p is required for Mid1p to exit the nucleus and form a ring, and Pom1p is required for proper placement of the Mid1p ring. Upon overexpression of Plo1p, Mid1p exits the nucleus prematurely and displays a reduced mobility on gels similar to that of the hyperphosphorylated form observed previously in mitotic cells. Genetic and two-hybrid analyses suggest that Plo1p and Mid1p act in a common pathway distinct from that involving Pom1p. Plo1p localizes to the spindle pole bodies and spindles of mitotic cells and also to the medial ring at the time of its formation. Taken together, the data indicate that Plo1p plays a role in the positioning of division sites by regulating Mid1p. Given its previously known functions in mitosis and the timing of cytokinesis, Plo1p is thus implicated as a key molecule in the spatial and temporal coordination of cytokinesis with mitosis.

摘要

裂殖酵母粟酒裂殖酵母利用基于F-肌动蛋白的中间收缩环进行对称分裂,以产生大小相等的子细胞。在两个先前描述的基因mid1和pom1中存在缺陷的突变体经常进行不对称分裂。在此,我们报告了三个新的温度敏感突变体的鉴定,这些突变体在分裂平面定位方面存在缺陷。所有这三个突变体在polo激酶基因plo1中都有突变,并且在内环的位置和组织方面显示出与mid1突变体非常相似的缺陷。在这两种情况下,环的形成经常在细胞极附近开始,这表明Mid1p和Plo1p在将中间环成分募集到细胞中心方面发挥作用。先前有报道称,在有丝分裂期间,Mid1p会发生过度磷酸化并从细胞核重新定位到中间环。在此我们表明,Mid1p首先在纺锤体形成期间形成一条弥散的皮质带,然后在后期之前聚合成一个环。Plo1p是Mid1p离开细胞核并形成环所必需的,而Pom1p是Mid1p环正确定位所必需的。当Plo1p过表达时,Mid1p会过早离开细胞核,并在凝胶上显示出与先前在有丝分裂细胞中观察到的过度磷酸化形式相似的降低的迁移率。遗传分析和双杂交分析表明,Plo1p和Mid1p在一条不同于涉及Pom1p的共同途径中起作用。Plo1p定位于有丝分裂细胞的纺锤极体和纺锤体,并且在中间环形成时也定位于中间环。综上所述,数据表明Plo1p通过调节Mid1p在分裂位点的定位中发挥作用。鉴于其在有丝分裂和胞质分裂时间方面先前已知的功能,Plo1p因此被认为是胞质分裂与有丝分裂在空间和时间上协调的关键分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfda/2132972/3adb9e0099dd/JCB9805037.f1.jpg

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