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酿酒酵母细胞在诱导黏附条件下的转录谱分析。

Transcriptional profiling of Saccharomyces cerevisiae cells under adhesion-inducing conditions.

作者信息

Kleinschmidt Malte, Grundmann Olav, Blüthgen Nils, Mösch Hans-Ulrich, Braus Gerhard H

机构信息

Institute of Microbiology and Genetics, Georg-August-University, Grisebachstrasse 8, 37077, Göttingen, Germany.

出版信息

Mol Genet Genomics. 2005 Jun;273(5):382-93. doi: 10.1007/s00438-005-1139-4. Epub 2005 Apr 21.

Abstract

The ability to adhere to other cells is one of the most prominent determinants of fungal pathogenicity. Thus, adherence of fungi to human tissues or plastics triggers hospital-acquired fungal infections, which are an increasing clinical problem, especially in immunocompromised persons. In the model fungus Saccharomyces cerevisiae adhesion can be induced by starvation for amino acids, and depends on the transcriptional activator of the general amino acid control system, Gcn4p. However, not much is known about the transcriptional program that mediates adhesive growth under such conditions. In this study, we present a genome-wide transcriptional analysis of Sigma1278b yeast cells that were subjected to adhesion-inducing conditions imposed by amino acid starvation. Twenty-two novel genes were identified as inducible by amino acid starvation; 72 genes belonging to different functional groups, which were not previously known to be regulated by Gcn4p, require Gcn4p for full transcriptional induction under adhesion-inducing conditions. In addition, several genes were identified in Sigma1278b cells that were inducible by amino acid starvation in a Gcn4p-independent manner. Our data suggest that adhesion of yeast cells induced by amino acid starvation is regulated by a complex, Sigma1278b-specific transcriptional response.

摘要

黏附其他细胞的能力是真菌致病性最显著的决定因素之一。因此,真菌黏附于人体组织或塑料制品会引发医院获得性真菌感染,这是一个日益严重的临床问题,在免疫功能低下的人群中尤为突出。在模式真菌酿酒酵母中,氨基酸饥饿可诱导黏附,且这一过程依赖于一般氨基酸控制系统的转录激活因子Gcn4p。然而,对于在这种条件下介导黏附生长的转录程序,我们了解得并不多。在本研究中,我们对Sigma1278b酵母细胞进行了全基因组转录分析,这些细胞处于由氨基酸饥饿施加的黏附诱导条件下。鉴定出22个新基因可被氨基酸饥饿诱导;72个属于不同功能组的基因,此前并不知晓受Gcn4p调控,在黏附诱导条件下,它们的完全转录诱导需要Gcn4p。此外,在Sigma1278b细胞中还鉴定出几个基因,它们可通过不依赖Gcn4p的方式被氨基酸饥饿诱导。我们的数据表明,氨基酸饥饿诱导的酵母细胞黏附受一种复杂的、Sigma1278b特异性转录反应调控。

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