College of Pharmacy, Chung-Ang University, 221 Huksuk-Dong, Dongjak-Gu, Seoul, 156-756, South Korea.
Biotechnol Lett. 2013 Mar;35(3):413-21. doi: 10.1007/s10529-012-1097-y. Epub 2012 Nov 27.
The effect of codon optimization of L1 gene on the production of the L1 protein of human papillomavirus (HPV) was investigated in a yeast expression system. Saccharomyces cerevisiae was transformed with a plasmid containing either the wild type (WS)-HPV type 58 L1 (HPV58 L1) gene or a codon-optimized (MO)-HPV58 L1 gene. The proportion of soluble L1 protein expressed from MO-HPV58 L1 was significantly higher than that expressed from WS-HPV58 L1. Moreover, the amount of purified MO-HPV58 L1 protein recovered was 2.5-fold higher than the amount of WS-HPV58 L1 protein. Codon optimization of HPV58 L1 gene thus increases the proportion of soluble L1 protein and the amount of purified product that can be used as antigen to generate vaccines.
研究了在酵母表达系统中对 L1 基因的密码子优化对人乳头瘤病毒(HPV)L1 蛋白产生的影响。将含有野生型(WS)-HPV 型 58 L1(HPV58 L1)基因或密码子优化(MO)-HPV58 L1 基因的质粒转化为酿酒酵母。从 MO-HPV58 L1 表达的可溶性 L1 蛋白的比例明显高于从 WS-HPV58 L1 表达的比例。此外,回收的纯化 MO-HPV58 L1 蛋白的量是 WS-HPV58 L1 蛋白的 2.5 倍。因此,HPV58 L1 基因的密码子优化增加了可作为抗原用于产生疫苗的可溶性 L1 蛋白的比例和纯化产物的量。