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Cdc14p磷酸酶影响白色念珠菌的细胞周期晚期事件和形态发生。

The Cdc14p phosphatase affects late cell-cycle events and morphogenesis in Candida albicans.

作者信息

Clemente-Blanco Andrés, González-Novo Alberto, Machín Félix, Caballero-Lima David, Aragón Luis, Sánchez Miguel, de Aldana Carlos R Vázquez, Jiménez Javier, Correa-Bordes Jaime

机构信息

Departamento de Microbiología, Facultad de Ciencias, Universidad de Extremadura, Avda Elvas SN, 06071, Badajoz, Spain.

出版信息

J Cell Sci. 2006 Mar 15;119(Pt 6):1130-43. doi: 10.1242/jcs.02820. Epub 2006 Feb 28.

Abstract

We have characterized the CDC14 gene, which encodes a dual-specificity protein phosphatase in Candida albicans, and demonstrated that its deletion results in defects in cell separation, mitotic exit and morphogenesis. The C. albicans cdc14delta mutants formed large aggregates of cells that resembled those found in ace2-null strains. In cdc14delta cells, expression of Ace2p target genes was reduced and Ace2p did not accumulate specifically in daughter nuclei. Taken together, these results imply that Cdc14p is required for the activation and daughter-specific nuclear accumulation of Ace2p. Consistent with a role in cell separation, Cdc14p was targeted to the septum region during the M-G1 transition in yeast-form cells. Interestingly, hypha-inducing signals abolished the translocation of Cdc14p to the division plate, and this regulation depended on the cyclin Hgc1p, since hgc1delta mutants were able to accumulate Cdc14p in the septum region of the germ tubes. In addition to its role in cytokinesis, Cdc14p regulated mitotic exit, since synchronous cultures of cdc14delta cells exhibited a severe delay in the destruction of the mitotic cyclin Clb2p. Finally, deletion of CDC14 resulted in decreased invasion of solid agar medium and impaired true hyphal growth.

摘要

我们已经对白色念珠菌中编码双特异性蛋白磷酸酶的CDC14基因进行了表征,并证明其缺失会导致细胞分离、有丝分裂退出和形态发生缺陷。白色念珠菌cdc14delta突变体形成了大的细胞聚集体,类似于在ace2缺失菌株中发现的聚集体。在cdc14delta细胞中,Ace2p靶基因的表达降低,并且Ace2p不会特异性地在子核中积累。综上所述,这些结果表明Cdc14p是Ace2p激活和子特异性核积累所必需的。与在细胞分离中的作用一致,在酵母形式细胞的M-G1转变期间,Cdc14p定位于隔膜区域。有趣的是,菌丝诱导信号消除了Cdc14p向分裂板的易位,并且这种调节依赖于细胞周期蛋白Hgc1p,因为hgc1delta突变体能够在芽管的隔膜区域积累Cdc14p。除了在胞质分裂中的作用外,Cdc14p还调节有丝分裂退出,因为cdc14delta细胞的同步培养物在有丝分裂细胞周期蛋白Clb2p的破坏中表现出严重延迟。最后,CDC14的缺失导致对固体琼脂培养基的侵袭减少和真正的菌丝生长受损。

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