同源重组
基因组
计算生物学
基因组工程
重新调整用途
基因组编辑
酿酒酵母
计算机科学
生物
遗传学
非同源性末端接合
串联
同源定向修复
代谢工程
清脆的
串联重复
酵母
解码方法
DNA
碱基对
端到端原则
人类基因组
编码(内存)
数据集成
作者
Seong-Rae Lee,Yubeen Seo,Pyung Cheon Lee
标识
DOI:10.1021/acssynbio.6c00436
摘要
ABSTRACT Wickerhamomyces ciferrii is a non-model diploid yeast that naturally produces tetraacetyl phytosphingosine (TAPS), a sphingoid base used in cosmetic and dermatological applications. However, its strong preference for non-homologous end joining (NHEJ) over homologous recombination (HR) limits conventional genome editing, while disruption of LIG4 , a core NHEJ gene, compromises cellular fitness. Here, we repurposed native NHEJ activity to develop a homology-independent multicopy genome integration platform for W. ciferrii . The platform combines three optimized donor-design features: telomeric end-shielding with two tandem copies of an 11 bp repeat to improve linear donor persistence, a defective URA5 auxotrophic marker to enrich multicopy integrants, and 5′-phosphorylated donor termini to enhance transformant recovery and integration output. These features were consolidated into the platform vector pTdmVU5. As a metabolic engineering demonstration, multicopy integration of LCB1 and LCB2 , encoding the two subunits of serine palmitoyltransferase, increased TAPS titer by 2.7-fold. This work converts the native NHEJ bias of W. ciferrii from a barrier to precise genome editing into a practical tool for pathway amplification and establishes a framework for engineering NHEJ-dominant non-model yeasts.
科研通智能强力驱动
Strongly Powered by AbleSci AI