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一个酵母基因组MCM1结合位点文库包含参与细胞周期调控、细胞壁和膜结构以及代谢的基因。

A library of yeast genomic MCM1 binding sites contains genes involved in cell cycle control, cell wall and membrane structure, and metabolism.

作者信息

Kuo M H, Grayhack E

机构信息

Department of Biology, University of Rochester, New York 14627.

出版信息

Mol Cell Biol. 1994 Jan;14(1):348-59. doi: 10.1128/mcb.14.1.348-359.1994.

Abstract

The Saccharomyces cerevisiae MCM1 protein, which is essential for viability, participates in both transcription activation and repression as well as DNA replication. However, neither the full network of genes at which MCM1 acts nor whether MCM1 itself mediates a regulatory response is known. Thus far, sites of MCM1 action have been identified by chance during analysis of particular genes. To identify a more complete set of genes on which MCM1 acts, we isolated a library of yeast genomic sequences to which MCM1 binds and then identified known genes within this library. Fragments of genomic DNA, bound to bacterially expressed MCM1 protein, were collected on a nitrocellulose filter, cloned, and analyzed. This selected library contains a large number of genes. As expected, it is enriched for strong MCM1 binding sites and contains cell-type-specific genes known to require MCM1. In addition, it also includes sequences upstream (or near the 5' end) of a number of identified yeast genes that have not yet been shown to be controlled by MCM1. These include genes whose products are involved in (i) the control of cell cycle progression (CLN3, CLB2, and FAR1), (ii) synthesis and maintenance of cell wall or cell membrane structures (PMA1, PIS1, DIT1,2, and GFA1), (iii) cellular metabolism (PCK1, MET2, and CCP1), and (iv) production of a secreted glycoprotein which is heat shock inducible (HSP150). The previously unidentified MCM1 binding site in the essential PMA1 gene is required for expression of a PMA1:lacZ fusion gene, providing evidence that one site is functionally important. We speculate that MCM1 coordinates decisions about cell cycle progression with changes in cell wall integrity and metabolic activity. The presence in the library of three genes involved in cell cycle progression reinforces the idea that one of the functions of MCM1 is indeed analogous to that of the mammalian serum response factor.

摘要

酿酒酵母的MCM1蛋白对细胞生存力至关重要,它参与转录激活、转录抑制以及DNA复制过程。然而,MCM1作用的完整基因网络以及MCM1自身是否介导调节反应均不为人所知。到目前为止,MCM1的作用位点是在对特定基因的分析过程中偶然发现的。为了鉴定出MCM1作用的更完整基因集,我们分离了一个与MCM1结合的酵母基因组序列文库,然后鉴定该文库中的已知基因。与细菌表达的MCM1蛋白结合的基因组DNA片段在硝酸纤维素滤膜上收集、克隆并分析。这个筛选出的文库包含大量基因。正如预期的那样,它富含强MCM1结合位点,并且包含已知需要MCM1的细胞类型特异性基因。此外,它还包括一些已鉴定的酵母基因上游(或5'端附近)的序列,这些基因尚未显示受MCM1调控。这些基因包括其产物参与以下方面的基因:(i)细胞周期进程的控制(CLN3、CLB2和FAR1),(ii)细胞壁或细胞膜结构的合成与维持(PMA1、PIS1、DIT1、2和GFA1),(iii)细胞代谢(PCK1、MET2和CCP1),以及(iv)一种热休克诱导的分泌糖蛋白的产生(HSP150)。必需的PMA1基因中先前未鉴定的MCM1结合位点是PMA1:lacZ融合基因表达所必需的,这提供了一个位点在功能上很重要的证据。我们推测MCM1协调关于细胞周期进程的决策与细胞壁完整性和代谢活性的变化。文库中存在三个参与细胞周期进程的基因,这强化了MCM1的功能之一确实类似于哺乳动物血清反应因子的功能这一观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6a3/358384/1c559a04f325/molcellb00001-0378-a.jpg

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