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重组质粒在酵母中对猪白细胞介素-2和融合牛cathelicidin基因的共表达及其对小鼠抗菌防御的促进作用

Co-Expression of Pig IL-2 and Fusion Bovine Cathelicidin Gene by Recombinant Plasmids in Yeast and Their Promotion of Mouse Antibacterial Defense.

作者信息

Chen Jianlin, Peng Junjie, Ma Changjun, Zhang Linhan, Wu Xueyin, Wei Hong, Li Jianglin, Lü Xuebin, Gao Rong

机构信息

School of Laboratory Medicine, Collaborative Innovation Center of Sichuan for Elderly Care and Health, Chengdu Medical College, Chengdu 610500, China.

Key Laboratory of Bio-Resource and Eco-Environment of Ministry of Education, College of Life Sciences, Sichuan University, Chengdu 610065, China.

出版信息

Biology (Basel). 2022 Oct 12;11(10):1491. doi: 10.3390/biology11101491.

Abstract

In order to develop an effective and safe immunomodulator to enhance the antimicrobial bioactivity and immunity of animals against infectious bacterial diseases, a recombinant plasmid pGAPZαA-IL2-B co-expressing pig interleukin-2 (PIL-2) and fused bovine cathelicidin (FBC) genes were constructed using the 2A self-cleavage technique. After being expressed in Pichia pastoris strain SMD1168, the recombinant yeast was administered orally to 5-week-old female ICR mice. The control mice were similarly dosed with P. pastoris with a blank plasmid or FBC recombinant plasmid alone. At 28 days post-treatment, the mice were challenged intraperitoneally with virulent strains of either or . Compared with the control groups, the mice that received recombinant yeast co-expressing PIL-2/FBC manifested significant increases in the number of leukocytes, CD4+ and CD8+ T cells, IgG, and the gene expressions of TLRs(TLR1,4,6,9), antimicrobial peptides(CRP4 and CRAMP) and cytokines (IL-2, 4, 6, 7, 12, 15, 23, IFN-γ, and TNF-α) in the blood. Furthermore, the treated mice displayed significantly higher survival than the other two control groups after the challenge. These results suggest that the antimicrobial activity and immunity of animals can be effectively enhanced by the in vivo co-expression of IL-2 and the FBS gene, which can facilitate the development of new immunopotentiation molecules to overcome the infection of antibiotic-resistant bacteria.

摘要

为了开发一种有效且安全的免疫调节剂,以增强动物抗传染性细菌疾病的抗菌生物活性和免疫力,利用2A自切割技术构建了共表达猪白细胞介素-2(PIL-2)和融合牛cathelicidin(FBC)基因的重组质粒pGAPZαA-IL2-B。在毕赤酵母菌株SMD1168中表达后,将重组酵母口服给予5周龄雌性ICR小鼠。对照小鼠分别用携带空质粒的毕赤酵母或单独的FBC重组质粒进行类似给药。治疗后28天,用或的强毒株对小鼠进行腹腔内攻击。与对照组相比,接受共表达PIL-2/FBC的重组酵母的小鼠血液中白细胞、CD4+和CD8+T细胞数量、IgG以及Toll样受体(TLR1、4、6、9)、抗菌肽(CRP4和CRAMP)和细胞因子(IL-2、4、6、7、12、15、23、IFN-γ和TNF-α)的基因表达显著增加。此外,攻击后,治疗组小鼠的存活率明显高于其他两个对照组。这些结果表明,IL-2和FBS基因在体内共表达可有效增强动物的抗菌活性和免疫力,这有助于开发新的免疫增强分子以克服耐抗生素细菌的感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f55b/9598770/74495fdbb27b/biology-11-01491-g001.jpg

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