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酿酒酵母中Ndt80(一种检查点调节的孢子形成特异性转录因子)的磷酸化形式和截短版本的活性。

Activity of phosphoforms and truncated versions of Ndt80, a checkpoint-regulated sporulation-specific transcription factor of Saccharomyces cerevisiae.

作者信息

Shubassi G, Luca N, Pak J, Segall J

机构信息

Department of Biochemistry, University of Toronto, Toronto, Ontario, M5S 1A8 Canada.

出版信息

Mol Genet Genomics. 2003 Dec;270(4):324-36. doi: 10.1007/s00438-003-0922-3. Epub 2003 Nov 7.

Abstract

Ndt80 contributes to the highly regulated cascade of sequential gene expression that directs spore formation in Saccharomyces cerevisiae. This DNA-binding transcriptional activator, which is responsible for the expression of a set of middle sporulation-specific genes, is a target of the meiotic recombination checkpoint. Triggering of this checkpoint prevents phosphorylation and accumulation of active Ndt80. In this study we have investigated the requirements for the activation function of Ndt80 by exploring the role of phosphorylation in the regulation of its activity and by examining the effect of C-terminal truncations. Of three phosphoforms of Ndt80 that we resolved, which we refer to as P approximately Ndt80", P approximately Ndt80', and P approximately Ndt80 in order of increasing electrophoretic mobility, the P approximately Ndt80" and P approximately Ndt80' isoforms correlated with active Ndt80. In particular, P approximately Ndt80" was present in lysates from wild-type sporulating cells and in cells that bypassed checkpoint-mediated arrest as a result of mutations in RAD17, SUM1, or SWE1, or overexpression of NDT80. P approximately Ndt80' was the slowest-migrating isoform that accumulated in Delta ime2/Delta ime2 Delta sum1/Delta sum1 cells in sporulation medium and in mitotic cells that ectopically expressed NDT80. Nonphosphorylated Ndt80 and P approximately Ndt80, which had a slightly lower mobility than nonphosphorylated Ndt80 and was the predominant phosphoform present in checkpoint-arrested cells, correlated with inactive Ndt80. These data are consistent with the notion that extensive phosphorylation, but not Ime2-dependent phosphorylation, of Ndt80 is required for its activity. Examination of the effect of increasingly extensive truncation of the C terminal region of Ndt80 revealed that some functions of Ndt80 were more sensitive to a reduction in its activity than others. In particular, we found that a truncated version of Ndt80 that lacked the last 110 residues was able to promote expression of some middle sporulation-specific genes, but could not direct spore formation. Full activity, however, could be restored to this version of Ndt80 by increasing its level of expression.

摘要

Ndt80参与了酿酒酵母中指导孢子形成的高度有序的基因表达级联反应。这种DNA结合转录激活因子负责一组孢子形成中期特异性基因的表达,是减数分裂重组检查点的作用靶点。该检查点的触发可阻止活性Ndt80的磷酸化和积累。在本研究中,我们通过探讨磷酸化在其活性调节中的作用以及研究C端截短的影响,来研究Ndt80激活功能的需求。我们解析出的Ndt80的三种磷酸化形式,按照电泳迁移率增加的顺序,分别称为P≈Ndt80"、P≈Ndt80'和P≈Ndt80,其中P≈Ndt80"和P≈Ndt80'异构体与活性Ndt80相关。具体而言,P≈Ndt80"存在于野生型孢子形成细胞的裂解物中,以及由于RAD17、SUM1或SWE1突变或NDT80过表达而绕过检查点介导的停滞的细胞中。P≈Ndt80'是在孢子形成培养基中的Δime2/Δime2 Δsum1/Δsum1细胞和异位表达NDT80的有丝分裂细胞中积累的迁移最慢的异构体。非磷酸化的Ndt80和P≈Ndt80(其迁移率略低于非磷酸化的Ndt80,是检查点停滞细胞中存在的主要磷酸化形式)与无活性的Ndt80相关。这些数据与以下观点一致,即Ndt80的活性需要广泛的磷酸化,但不需要Ime2依赖性磷酸化。对Ndt80 C端区域越来越广泛截短的影响进行检查发现,Ndt80的某些功能对其活性降低比其他功能更敏感。特别是,我们发现缺少最后110个残基的Ndt80截短版本能够促进一些孢子形成中期特异性基因的表达,但不能指导孢子形成。然而,通过提高其表达水平,可以恢复该版本Ndt80的全部活性。

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