Qin Wei-Yun, Gan Li-Na, Xia Ri-Wei, Sun Shou-Yong, Zhu Guo-Qiang, Wu Sheng-Long, Bao Wen-Bin
Key Laboratory for Animal Genetics, Breeding, Reproduction and Molecular Design of Jiangsu Province, College of Animal Science and Technology, Yangzhou University, Yangzhou, Jiangsu, PR China.
College of Veterinary Medicine, Yangzhou University, Yangzhou, Jiangsu, PR China.
Gene. 2017 Jun 15;616:45-51. doi: 10.1016/j.gene.2017.03.016. Epub 2017 Mar 21.
Bactericidal/permeability-increasing (BPI) protein is a member of a new generation of proteins known as super-antibiotics that are implicated as endotoxin neutralising agents. Non-uniform usage of synonymous codons for a specific amino acid during translation of a protein is known as codon usage bias (CUB). Analysis of CUB and compositional dynamics of coding sequences could contribute to a better understanding of the molecular mechanism and the evolution of a particular gene. In this study, we performed CUB analysis of the complete coding sequences of the BPI gene from nine different species. The codon usage patterns of BPI across different species were found to be influenced by GC bias, particularly GC3s, with a moderate bias in the codon usage of BPI. We found significant similarities in the codon usage patterns in BPI gene among closely related species, such as Sus_scrofa and Bos_taurus. Moreover, we observed evolutionary conservation of the most over-represented codon CUG for the amino acid leucine in the BPI gene across all species. In conclusion, our analysis provides a novel insight into the codon usage patterns of BPI. This information facilitates an improved understanding of the structural, functional and evolutionary significance of BPI gene among species, and provides a theoretical reference for developing antiseptic drug proteins with high efficiency across species.
杀菌/通透性增加蛋白(BPI)是新一代被称为超级抗生素的蛋白质成员,被认为是内毒素中和剂。在蛋白质翻译过程中,特定氨基酸同义密码子的非均匀使用被称为密码子使用偏好(CUB)。分析CUB和编码序列的组成动态有助于更好地理解特定基因的分子机制和进化。在本研究中,我们对来自九个不同物种的BPI基因的完整编码序列进行了CUB分析。发现不同物种间BPI的密码子使用模式受GC偏好影响,尤其是GC3s,BPI的密码子使用存在中度偏好。我们发现密切相关物种(如野猪和牛)的BPI基因密码子使用模式存在显著相似性。此外,我们观察到在所有物种的BPI基因中,对于亮氨酸氨基酸,最常出现的密码子CUG具有进化保守性。总之,我们的分析为BPI的密码子使用模式提供了新的见解。这些信息有助于更好地理解BPI基因在物种间的结构、功能和进化意义,并为跨物种高效开发抗菌药物蛋白提供理论参考。