Genome-Wide Landscape of Position Effect Variegation in Pichia pastoris

生物 开放式参考框架 基因 遗传学 毕赤酵母 转座因子 突变 黄色粘球菌 杂色(组织学) 位置效应 染色质免疫沉淀 主要促进者超家族 重组工程 基因组文库 转座子突变 染色质 计算生物学 基因表达 染色体区 保守序列 基因表达调控 小桶 转座酶 基因组 终端(太阳能) 基因组岛 发起人 比较基因组学
作者
Xueyan Yao,Baosong Chen,Ni Liu,Wenyan Gao,Q. M. Zhang,Yongpeng Yao,Yuanyuan Pan,G. S. Liu
出处
期刊:Journal of Fungi [Multidisciplinary Digital Publishing Institute]
卷期号:12 (2): 136-136
标识
DOI:10.3390/jof12020136
摘要

Exogenous genes are generally expressed by integration into the chromosomes of Pichia pastoris. However, systematic studies on the chromosomal position effect are lacking, and locations that are conducive to the high expression of foreign genes are rarely reported. In this study, a genomic random insertion mutagenesis library for P. pastoris was successfully constructed using the piggyBac (PB) transposon system. Through sequencing, the sequence TTAA was identified as the major recognition site of the PB transposon, which exhibited relatively high coverage on P. pastoris chromosomes, making it a valuable tool for studying position effect variegation in P. pastoris. Using the enhanced green fluorescent protein gene (eGFP) as a reporter, two libraries including low-expression positions and high-expression positions were obtained by flow cytometry. The low-expression sites were mainly located upstream of ORFs around the promoter region and downstream near the terminator region, while the high-expression sites were predominantly located at the gene interior. KEGG and GO analyses showed that genes in high-expression positions were significantly enriched in the ATP-dependent chromatin remodeling and histone binding pathways, and genes in low-expression positions were significantly enriched in the MAPK signaling pathway, autophagy, mitochondrial autophagy, ABC transporters, and the arginine synthesis pathway. This study has clarified the genome-wide landscape of position effect variegation in P. pastoris. Additionally, it has provided novel insights into high-throughput screening strategies for strains with high exogenous gene expression.
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