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通过phiC31整合酶介导的基因传递生产在牛奶中高表达人血清白蛋白的转基因牛。

Production of transgenic cattle highly expressing human serum albumin in milk by phiC31 integrase-mediated gene delivery.

作者信息

Luo Yan, Wang Yongsheng, Liu Jun, Lan Hui, Shao Minghao, Yu Yuan, Quan Fusheng, Zhang Yong

机构信息

College of Veterinary Medicine, Northwest A&F University, Key Laboratory of Animal Biotechnology of the Ministry of Agriculture, Yangling, 712100, Shaanxi, China.

出版信息

Transgenic Res. 2015 Oct;24(5):875-83. doi: 10.1007/s11248-015-9898-0. Epub 2015 Jul 22.

Abstract

Transgenic cattle expressing high levels of recombinant human serum albumin (HSA) in their milk may as an alternative source for commercial production. Our objective was to produce transgenic cattle highly expressing HSA in milk by using phiC31 integrase system and somatic cell nuclear transfer (SCNT). The mammary-specific expression plasmid pIACH(-), containing the attB recognition site for phiC31 integrase, were co-transfected with integrase expression plasmid pCMVInt into bovine fetal fibroblast cells (BFFs). PhiC31 integrase-mediated integrations in genome of BFFs were screened by nested inverse PCR. After analysis of sequence of the PCR products, 46.0% (23/50) of the both attB-genome junction sites (attL and attR) were confirmed, and four pseudo attP sites were identified. The integration rates in BF3, BF11, BF19 and BF4 sites were 4.0% (2/50), 6.0% (3/50), 16.0% (8/50) and 20.0% (10/50), respectively. BF3 is located in the bovine chromosome 3 collagen alpha-3 (VI) chain isomer 2 gene, while the other three sites are located in the non-coding region. The transgenic cell lines from BF11, BF19 and BF4 sites were used as donors for SCNT. Two calves from transgenic cells BF19 were born, one died within a few hours after birth, and another calf survived healthy. PCR and Southern blot analysis revealed integration of the transgene in the genome of cloned calves. The nested reverse PCR confirmed that the integration site in cloned calves was identical to the donor cells. The western blotting assessment indicated that recombinant HSA was expressed in the milk of transgenic cattle and the expression level was about 4-8 mg/mL. The present study demonstrated that phiC31 integrase system was an efficient and safety gene delivery tool for producing HSA transgenic cattle. The production of recombinant HSA in the milk of cattle may provide a large-scale and cost-effective resource.

摘要

在牛奶中高水平表达重组人血清白蛋白(HSA)的转基因牛可作为商业生产的替代来源。我们的目标是通过使用phiC31整合酶系统和体细胞核移植(SCNT)来生产在牛奶中高表达HSA的转基因牛。将含有phiC31整合酶attB识别位点的乳腺特异性表达质粒pIACH(-)与整合酶表达质粒pCMVInt共转染到牛胎儿成纤维细胞(BFFs)中。通过巢式反向PCR筛选phiC31整合酶介导的BFFs基因组整合。对PCR产物进行序列分析后,确认了46.0%(23/50)的attB-基因组连接位点(attL和attR),并鉴定出四个假attP位点。BF3、BF11、BF19和BF4位点的整合率分别为4.0%(2/50)、6.0%(3/50)、16.0%(8/50)和20.0%(10/50)。BF3位于牛3号染色体胶原蛋白α-3(VI)链异构体2基因中,而其他三个位点位于非编码区。来自BF11、BF19和BF4位点的转基因细胞系用作SCNT的供体。来自转基因细胞BF19的两只小牛出生,一只在出生后几小时内死亡,另一只小牛健康存活。PCR和Southern印迹分析显示转基因整合到克隆小牛的基因组中。巢式反向PCR证实克隆小牛中的整合位点与供体细胞相同。蛋白质印迹评估表明重组HSA在转基因牛的牛奶中表达,表达水平约为4-8 mg/mL。本研究表明phiC31整合酶系统是生产HSA转基因牛的一种高效且安全的基因传递工具。牛乳汁中重组HSA的生产可能提供一种大规模且具有成本效益的资源。

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