利用 CRISPR/Cas9 将基因工程山羊作为生产重组人中性粒细胞肽 1 的高效乳腺生物反应器

Biology Pub Date : 2024-05-23 DOI:10.3390/biology13060367
Dongxu Li, Rihong Guo, Fang Chen, Jingang Wang, Feng Wang, Yongjie Wan
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引用次数: 0

摘要

乳腺生物反应器是一种很有前景的重组蛋白质生产方法。人中性粒细胞肽 1(HNP1)具有抗菌和免疫调节特性。本研究旨在建立一种利用乳腺作为生物反应器生产分泌 HNP1 的山羊的方法。在 CSN2 启动子的控制下,利用 CRISPR/Cas9 技术将 HNP1 序列敲入山羊 β-酪蛋白(CSN2)基因的第 7 号外显子,从而产生 HNP1 转基因山羊。将Cas9 mRNA、sgRNA和包含T2A-HNP1序列的同源质粒的混合物注入单细胞期胚胎的细胞质中,然后移植到受体山羊体内。共产生了 22 只活体后代山羊,其中 21 只山羊(95.45%)表现出 CSN2 基因座的定向编辑,2 只雌性山羊(9.09%)表现出成功的 HNP1 整合。Western 印迹和酶联免疫吸附分析证实,这些 HNP1 阳性山羊的乳汁中含有高水平的 HNP1 蛋白,在最初 60 天的哺乳期中,平均浓度分别为 22.10 µg/mL 和 0.0092 µg/mL。此外,这些转基因山羊的乳汁对大肠杆菌和金黄色葡萄球菌具有显著的抗菌活性,证明了表达的 HNP1 蛋白的功能性。总之,我们建立了一种开发新的转基因山羊品系作为乳腺生物反应器的有效方法,转基因山羊分泌的具有生物活性的 HNP1 蛋白具有对抗微生物抗药性的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetically Engineered Goats as Efficient Mammary Gland Bioreactors for Production of Recombinant Human Neutrophil Peptide 1 Using CRISPR/Cas9
Mammary gland bioreactors are promising methods for recombinant protein production. Human neutrophil peptide 1 (HNP1) exhibits antibacterial and immune-modulating properties. This study aims to establish a method to generate goats secreting HNP1 using the mammary gland as bioreactors. HNP1 transgenic goats were generated by using CRISPR/Cas9 technology to knock-in (KI) the HNP1 sequence into exon 7 of the goat β-casein (CSN2) gene under the control of the CSN2 promoter. One-cell stage embryos were cytoplasmically injected with a mixture of Cas9 mRNA, sgRNA, and a homologous plasmid including the T2A-HNP1 sequences, followed by transfer to recipient goats. A total of 22 live offspring goats were delivered, and 21 of these goats (95.45%) exhibited targeted edits at the CSN2 locus, and 2 female goats (9.09%) demonstrated successful HNP1 integration. Western blot and ELISA analyses confirmed the presence of HNP1 protein at high levels in the milk of these HNP1-positive goats, with mean concentrations of 22.10 µg/mL and 0.0092 µg/mL during the initial 60 days of lactation. Furthermore, milk from these transgenic goats exhibited notable antibacterial activity against Escherichia coli and Staphylococcus aureus, demonstrating the functionality of the expressed HNP1 protein. In conclusion, we established an efficient method for developing new transgenic goat lines as a mammary gland bioreactor, and the bioactive HNP1 protein secreted by the transgenic goat has the potential to combat microbial resistance.
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