Zong Xian-lei, Jiang Du-yin, Li Guo-ju, Cai Jing-long
Sixteenth Department of Cosmetic Plastic Surgery, Chinese Academy of Medical Sciences, Beijing, China.
Zhonghua Yi Xue Za Zhi. 2013 Apr 9;93(14):1058-62.
To construct and display the keratinocyte growth factor (KGF) phage active peptides so as to detect the promoting effects of epidermal cell.
KGF sequences were chosen and their primers were designed. The selected genes of P1, P2 and P4 were obtained by reverse transcription (RT)-PCR. P3 was obtained by direct synthesis. And the KGF genes were subcloned into pComb3 vector. The technique of phage display was employed to display the genes on phage surface. Methyl thiazolyl tetrazolium (MTT) assay was used to evaluate the promoting effects of KGF phage active peptides on the proliferation of epidermal cell. Optical density (A) was determined at 570 nm. Immunofluorescent assay was employed to evaluate the cell affinity of KGF phage active peptides.
The four KGF genes were obtained and subcloned into pComb3 vector. The proteins of the KGF genes were expressed on the surface of the pComb3 vector. The MTT data of optical density (A) showed that significant differences existed between the negative control and KGF control (0.293 ± 0.017 vs 0.520 ± 0.043) and KGF phage active peptide groups (0.293 ± 0.017 vs 0.469 ± 0.057, 0.441 ± 0.048, 0.438 ± 0.035, 0.446 ± 0.037) (all P < 0.01). The results of immunofluorescent assay indicated that KGF and KGF phage active peptides had excellent cell affinity.
KGF phage active peptides are successfully constructed and displayed and they may promote the proliferation of epidermal cell.
构建并展示角质形成细胞生长因子(KGF)噬菌体活性肽,以检测其对表皮细胞的促进作用。
选取KGF序列并设计引物。通过逆转录(RT)-PCR获得P1、P2和P4的选定基因。P3通过直接合成获得。将KGF基因亚克隆到pComb3载体中。采用噬菌体展示技术将基因展示在噬菌体表面。采用甲基噻唑基四氮唑(MTT)法评估KGF噬菌体活性肽对表皮细胞增殖的促进作用。在570nm处测定光密度(A)。采用免疫荧光法评估KGF噬菌体活性肽的细胞亲和力。
获得四个KGF基因并亚克隆到pComb3载体中。KGF基因的蛋白质在pComb3载体表面表达。光密度(A)的MTT数据显示,阴性对照与KGF对照(0.293±0.017对0.520±0.043)以及KGF噬菌体活性肽组(0.293±0.017对0.469±0.057、0.441±0.048、0.438±0.035、0.446±0.037)之间存在显著差异(均P<0.01)。免疫荧光分析结果表明,KGF和KGF噬菌体活性肽具有良好的细胞亲和力。
成功构建并展示了KGF噬菌体活性肽,其可能促进表皮细胞增殖。