Ye L, Gui-Hua Z, Kun Y, Hong-Fa W, Ting X, Gong-Zhen L, Wei-Xia Z, Yong C
School of Medicine and Life Sciences, University of Jinan-Shandong Academy of Medical Sciences, Shandong Institute of Parasitic Diseases, Jining 272033, China; First people's Hospital of Jining City, China.
School of Medicine and Life Sciences, University of Jinan-Shandong Academy of Medical Sciences, Shandong Institute of Parasitic Diseases, Jining 272033, China.
Zhongguo Xue Xi Chong Bing Fang Zhi Za Zhi. 2017 Apr 12;29(4):464-467. doi: 10.16250/j.32.1374.2016271.
To establish the primary cat intestinal epithelial cells (IECs) culture methods and construct the cDNA library for the following yeast two-hybrid experiment, so as to screen the virulence interaction factors among the final host. The primary cat IECs were cultured by the tissue cultivation and combined digestion with collagenase XI and dispase I separately. Then the cat IECs cultured was identified with the morphological observation and cyto-keratin detection, by using goat anti-cyto-keratin monoclonal antibodies. The mRNA of cat IECs was isolated and used as the template to synthesize the first strand cDNA by SMART™ technology, and then the double-strand cDNAs were acquired by LD-PCR, which were subsequently cloned into the plasmid PGADT7-Rec to construct yeast two-hybrid cDNA library in the yeast strain Y187 by homologous recombination. Matchmaker™ Insert Check PCR was used to detect the size distribution of cDNA fragments after the capacity calculation of the cDNA library. The comparison of the two cultivation methods indicated that the combined digestion of collagenase XI and dispase I was more effective than the tissue cultivation. The cat IECs system of continuous culture was established and the cat IECs with high purity were harvested for constructing the yeast two-hybrid cDNA library. The library contained 1.1×10 independent clones. The titer was 2.8×10 cfu/ml. The size of inserted fragments was among 0.5-2.0 kb. The yeast two-hybrid cDNA library of cat IECs meets the requirements of further screen research, and this study lays the foundation of screening the virulence interaction factors among the cDNA libraries of its final hosts.
为建立猫原代肠上皮细胞(IECs)培养方法并构建cDNA文库,用于后续酵母双杂交实验,以筛选终末宿主间的毒力相互作用因子。采用组织培养法,分别用Ⅺ型胶原酶和Dispase I联合消化培养猫原代IECs。然后,利用山羊抗细胞角蛋白单克隆抗体,通过形态学观察和细胞角蛋白检测对培养的猫IECs进行鉴定。提取猫IECs的mRNA,以其为模板,采用SMART™技术合成第一链cDNA,再通过长距离PCR(LD-PCR)获得双链cDNA,随后通过同源重组将其克隆到质粒pGADT7-Rec中,在酵母菌株Y187中构建酵母双杂交cDNA文库。在计算cDNA文库库容后,用Matchmaker™ Insert Check PCR检测cDNA片段的大小分布。两种培养方法的比较表明,Ⅺ型胶原酶和Dispase I联合消化比组织培养更有效。建立了猫IECs连续培养体系,收获了高纯度的猫IECs用于构建酵母双杂交cDNA文库。该文库包含1.1×10个独立克隆,滴度为2.8×10 cfu/ml,插入片段大小在0.5 - 2.0 kb之间。猫IECs酵母双杂交cDNA文库符合进一步筛选研究的要求,本研究为筛选其终末宿主cDNA文库中的毒力相互作用因子奠定了基础。