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卡氏肺孢子虫Cdc25有丝分裂磷酸酶介导的生长差异调节和关卡控制

Differential regulation of growth and checkpoint control mediated by a Cdc25 mitotic phosphatase from Pneumocystis carinii.

作者信息

Gustafson M P, Thomas C F, Rusnak F, Limper A H, Leof E B

机构信息

Department of Biochemistry and Molecular Biology, Mayo Clinic, Rochester, Minnesota 55905, USA.

出版信息

J Biol Chem. 2001 Jan 5;276(1):835-43. doi: 10.1074/jbc.M007814200.

Abstract

Pneumocystis carinii is an opportunistic fungal pathogen phylogenetically related to the fission yeast Schizosaccharomyces pombe. P. carinii causes severe pneumonia in immunocompromised patients with AIDS and malignancies. Although the life cycle of P. carinii remains poorly characterized, morphologic studies of infected lung tissue indicate that P. carinii alternates between numerous small trophic forms and fewer large cystic forms. To understand further the molecular mechanisms that regulate progression of the cell cycle of P. carinii, we have sought to identify and characterize genes in P. carinii that are important regulators of eukaryotic cell cycle progression. In this study, we have isolated a cDNA from P. carinii that exhibits significant homology, but unique functional characteristics, to the mitotic phosphatase Cdc25 found in S. pombe. P. carinii Cdc25 was shown to rescue growth of the temperature-sensitive S. pombe cdc25-22 strain and thus provides an additional tool to investigate the unique P. carinii life cycle. Although P. carinii Cdc25 could also restore the DNA damage checkpoint in cdc25-22 cells, it was unable to restore fully the DNA replication checkpoint. The dissociation of checkpoint control at the level of Cdc25 indicates that Cdc25 may be under distinct regulatory control in mediating checkpoint signaling.

摘要

卡氏肺孢子菌是一种机会性真菌病原体,在系统发育上与裂殖酵母粟酒裂殖酵母相关。卡氏肺孢子菌可导致艾滋病和恶性肿瘤免疫功能低下患者发生严重肺炎。尽管卡氏肺孢子菌的生命周期仍未得到充分描述,但对感染肺组织的形态学研究表明,卡氏肺孢子菌在众多小滋养体形式和较少大囊泡形式之间交替。为了进一步了解调节卡氏肺孢子菌细胞周期进程的分子机制,我们试图鉴定和表征卡氏肺孢子菌中作为真核细胞周期进程重要调节因子的基因。在本研究中,我们从卡氏肺孢子菌中分离出一个cDNA,它与粟酒裂殖酵母中发现的有丝分裂磷酸酶Cdc25具有显著同源性,但具有独特的功能特性。卡氏肺孢子菌Cdc25被证明可挽救温度敏感型粟酒裂殖酵母cdc25 - 22菌株的生长,从而为研究卡氏肺孢子菌独特的生命周期提供了额外工具。尽管卡氏肺孢子菌Cdc25也能恢复cdc25 - 22细胞中的DNA损伤检查点,但它无法完全恢复DNA复制检查点。Cdc25水平上检查点控制的解离表明,Cdc25在介导检查点信号传导时可能受到不同的调节控制。

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