现在是 2024年11月23日 周六 12点 中午好! 吃过午餐了吗?
- ATP发光检测
- 酶活性检测
- 乙酰胆碱酯酶AChE发光检测
- Calpain发光检测
- 二肽酶IV(DPPIV)发光检测
- GSH谷胱甘肽发光检测
- 磷酸二酯酶PDE检测
- 蛋白酶体Proteasome发光检测
- 分泌型碱性磷酸酶SEAP发光检测
- 激酶检测
- 去泛素化酶DUBs发光检测
- 应用发光细菌检测水质毒性
- 水母发光蛋白-钙离子检测
- 免疫化学发光检测
- 细胞凋亡检测
- 细胞增殖检测
- 荧光素酶检测
- 萤火虫荧光素酶检测
- 海肾荧光素酶检测
- Gaussia荧光素酶检测
- 双荧光素酶报告基因检测
- 双荧光素酶报告基因常见问题
- 荧光素酶报告基因常见问题
- 荧光素酶影响因素及注意事项
- DNA及RNA定量检测
- DNA定量检测
- RNA定量检测
- 支原体发光检测
- ADME药物代谢发光检测
- 单胺氧化酶AMO发光检测
- 细胞色素P450(CYP450)发光检测
- P糖蛋白P-GP发光检测
- 细胞毒性检测
- RNAi检测
- cAMP检测
- 干扰素的生物学活性检测
- 鲁米诺化学发光检测应用
- ATP法检测活性污泥生物活性
首页 > 所有下载 > Gaussia荧光素酶相关文献1--Codon-Optimized Gaussia Luciferase cDNA for Mammalian Gene Expression in Culture and in Vivo
Gaussia荧光素酶相关文献1--Codon-Optimized Gaussia Luciferase cDNA for Mammalian Gene Expression in Culture and in Vivo
Codon-Optimized Gaussia Luciferase cDNA for Mammalian Gene Expression in Culture and in Vivo
Bakhos A. Tannous,1,2,* Dong-Eog Kim,1 Juliet L. Fernandez Photoproteins have played a major role in advancing our understanding of biological processes. A broader array of biocompatible, nontoxic, and novel reporters can serve to expand this potential. Here we describe the properties of a luciferase from the copepod marine organism Gaussia princeps. It is a monomeric protein composed of 185 aa (19.9 kDa) with a short coding sequence (555 bp) making it suitable for viral vectors. The humanized form of Gaussia luciferase (hGLuc) was efficiently expressed in mammalian cells following delivery by HSV-1 amplicon vectors. It was found to be nontoxic and naturally secreted, with flash bioluminescence characteristics similar to those of other coelenterazine luciferases. hGLuc generated over 1000-fold higher bioluminescent signal intensity from live cells together with their immediate environment and over 100-fold higher intensity from viable cells alone (not including secreted luciferase) or cell lysates, compared to humanized forms of firefly (hFLuc) and Renilla (hRLuc) luciferases expressed under similar conditions. Furthermore, hGLuc showed 200-fold higher signal intensity than hRLuc and intensity comparable to that of hFLuc in vivo under standard imaging conditions. Gaussia luciferase provides a sensitive means of imaging gene delivery and other events in living cells in culture and in vivo, with a unique combination of features including high signal intensity, secretion, and ATP independence, thus being able to report from the cells and their environment in real time. 查阅更多相关应用文章
|
- © 2010-2015 版权所有 | 原平皓生物
- 关于我们
- 联系我们
- 京ICP备10029779号-1