期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
红光熊蜂蜂毒蛋白酶的基因克隆和表达
1
作者 鲁炜 李光植 +2 位作者 王东 崔征 陈炳来 《沈阳药科大学学报》 CAS CSCD 北大核心 2009年第1期69-73,共5页
目的克隆表达序列标签(ESTs)中筛选出的红光熊蜂蜂毒蛋白酶(BiVP)基因,在草地夜蛾(Spodoptera frugiperda)细胞Sf-9中进行表达。方法利用ESTs从红光熊蜂cDNA文库中获得BiVP基因,以PCR技术扩增出BiVP的完整cDNA,并构建病毒表达载体PBac1-... 目的克隆表达序列标签(ESTs)中筛选出的红光熊蜂蜂毒蛋白酶(BiVP)基因,在草地夜蛾(Spodoptera frugiperda)细胞Sf-9中进行表达。方法利用ESTs从红光熊蜂cDNA文库中获得BiVP基因,以PCR技术扩增出BiVP的完整cDNA,并构建病毒表达载体PBac1-BiVP,通过昆虫杆状病毒表达系统,在Sf-9昆虫细胞中进行表达,表达产物用快速蛋白液相色谱(FPLC)系统进行纯化。结果成功克隆BiVP基因并在Sf-9昆虫细胞中得到表达,表达产物纯化后经SDS-PAGE检查为单一条带。结论首次在红光熊蜂中克隆到蜂毒蛋白酶基因,在昆虫杆状病毒表达系统中进行了表达,并对表达产物进行了纯化,为深入研究BiVP的生物活性奠定了基础。 展开更多
关键词 红光熊蜂 蜂毒蛋白酶 克隆 表达 杆状病毒
下载PDF
Anti-angiogenesis effect of melittin on Mock/MHCC97-H cells by the regulation of cathepsin S in vivo
2
作者 Guang-Qiang Ye Zhi Zhang +2 位作者 Chun-Hui Ye Keooudone Thammavong Jing Xu 《Traditional Medicine Research》 2018年第1期22-28,共7页
Objective: To study the anti-angiogenesis effect of melittin on human hepatoma Mock/MHCC97-H cells by regulatingthe expression of cathepsin S (CatS) in vivo. Methods: Models of in situ transplantation tumor of Moc... Objective: To study the anti-angiogenesis effect of melittin on human hepatoma Mock/MHCC97-H cells by regulatingthe expression of cathepsin S (CatS) in vivo. Methods: Models of in situ transplantation tumor of Mock/MHCC97-Hcells and silencing cathepsin shRNA-CatS/ MHCC97-H cells in nude mice were established. The model mice wererandomly divided into four groups. In the A1 group, the mice were inoculated with shRNA-CatS/MHCC97-H cells andtreated with melittin. In the A2 group, the mice were inoculated with shRNA-CatS/MHCC97-H cells and treated withsaline. In the B1 group, the mice were inoculated with Mock/MHCC97-H cells and treated with melittin. In the B2 group,the mice were inoculated with Mock/MHCC97-H cells and treated with saline. The A1 and B1 group were injected withmelittin (80 mg/kg) intraperitoneally every day. The A2 and B2 group were injected with 0.2 mL normal salineintraperitoneally every day. After administration for 25 days, the animals were sacrificed. The tumor size and weight innude mice in each group were recorded. The expression of CD34 protein in the xenograft tumor tissues was detected byimmunohistochemistry. The expression of Cat S, VEGF-A, p-VEGFR2, Ras, Raf, p-Raf, MEK1, p-MEK1, ERK1/2 andp-ERK1/2 proteins were detected by western blot. Results: The B1 group had significantly smaller tumor volumes andlower tumor weights than the B2 group (both P 〈 0.001). There was no significant difference between the A1 group andA2 group in tumor volumes and weights. The number of CD34-positive microvessels in the B2 group was significantlyhigher than that in the A2 group (P 〈 0.001). The number of CD34-positive microvessels in the B1 group wassignificantly lesser than that in the A1 group (P 〈 0.001). Most strikingly, in the model featuring inoculation ofMock/MHCC97-H cells, CatS, VEGF-A, p-VEGFR2, Ras, Raf, p-Raf, MEK1, p-MEK1, ERK1/2 and p-ERK1/2expression were inhibited when treated with melittin. However, in the model featuring the inoculation ofshRNA-CatS/MHCC97-H cells, no such effects were observed with similar treatments. Conclusion: Melittin can inhibitthe growth of tumors and angiogenesis by blocking the CatS-VEGf-A signaling pathway. 展开更多
关键词 MELITTIN Cathepsin S Human Liver cancer Mock/MHCC97-H cells
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部