Global Transcriptomic Analysis Identifies Gene Expression Programs Regulated by α-Factor in Yeast

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초록

In yeast, the mating pheromone alpha-factor triggers a signaling cascade in haploid "a" cells, leading to G1 cell cycle arrest, polarized growth ("shmoo" formation), cell wall remodeling, and ultimately cell fusion. While the physiological responses to alpha-factor are well established, a genome-wide analysis of transcriptional changes in response to alpha-factor has not been previously reported. Here, we performed RNA sequencing (RNA-seq) to profile gene expression changes in "a" mating type yeast cells treated with alpha-factor. We identified 957 differentially expressed genes (DEGs), including 448 upregulated and 509 downregulated genes. Gene ontology (GO) analysis revealed enrichment of upregulated genes in pheromone signaling, cell wall biogenesis, and cell shape regulation. In contrast, downregulated genes were mainly associated with cell cycle progression, chromatin remodeling, histone gene expression, and nucleosome organization. Our dataset validates known pheromone-responsive genes and identifies novel candidates potentially involved in mating responses. These findings provide a valuable resource for understanding how transcriptional regulation and chromatin dynamics are coordinated during pheromone signaling in yeast.

키워드

Saccharomyces cerevisiaealpha-factorpheromone signalingcell cycle arrestchromatin remodelingSIGNAL-TRANSDUCTION PATHWAYPHEROMONE RESPONSE PATHWAYMAP KINASE PATHWAYSCELL-CYCLE ARRESTSACCHAROMYCES-CEREVISIAEMATING PHEROMONEPROTEIN SIR2A-FACTORFAR1CONJUGATION
제목
Global Transcriptomic Analysis Identifies Gene Expression Programs Regulated by α-Factor in Yeast
저자
Yeom, SoojinLee, Jung-Shin
DOI
10.4014/jmb.2509.09015
발행일
2025
유형
Article
저널명
Journal of Microbiology and Biotechnology
35