Neuroscience Center, Department of Neurology, Massachusetts General Hospital, Charlestown, Massachusetts, USA.
Mol Ther. 2011 Jun;19(6):1090-6. doi: 10.1038/mt.2011.17. Epub 2011 Feb 22.
Noninvasive detection and in vivo imaging of apoptosis plays a critical role in the development of therapeutics in many different fields including cancer. We have developed an apoptosis biosensor by fusing green fluorescent protein (GFP) to the N-terminus of the naturally secreted Gaussia luciferase separated by a caspase-3 cleavage peptide consisting of aspartic acid (D), glutamic acid (E), valine (V), and aspartic acid (D) or DEVD. We showed that this fusion is retained in the cytoplasm of cells in an inactive form. Upon apoptosis, the DEVD peptide is cleaved in response to caspase-3 activation, freeing ssGluc, which can now enter the secretory pathway where it is folded properly and is released from the cells and can be detected in the conditioned medium in culture or in blood of live animals ex vivo over time. Because Gluc is secreted from cells via conventional pathway through the endoplasmic reticulum (ER), Golgi and vesicles, we showed that the presence of Gluc in these compartments in response to apoptosis can be visualized in vivo using bioluminescence imaging. This reporter provides a valuable tool for imaging and real-time monitoring of apoptosis and is compatible with high-throughput functional screening application in cultured cells and animal models.
在许多不同领域,包括癌症,非侵入性检测和体内凋亡成像在治疗方法的发展中起着至关重要的作用。我们通过将绿色荧光蛋白(GFP)融合到天然分泌的海肾荧光素酶的 N 端来开发凋亡生物传感器,该酶通过包含天冬氨酸(D)、谷氨酸(E)、缬氨酸(V)和天冬氨酸(D)或 DEVD 的半胱天冬酶-3 切割肽隔开。我们表明,这种融合以无活性形式保留在细胞的细胞质中。凋亡时,DEVD 肽被半胱天冬酶-3 激活切割,释放 ssGluc,现在可以进入分泌途径,在该途径中正确折叠并从细胞中释放出来,并可以在培养物中的条件培养基或活动物的血液中随时间进行体外检测。因为 Gluc 通过内质网(ER)、高尔基体和囊泡通过常规途径从细胞中分泌出来,所以我们表明,在体内可以使用生物发光成像来可视化凋亡时这些隔室中 Gluc 的存在。该报告基因提供了一种用于成像和实时监测凋亡的有价值的工具,并且与培养细胞和动物模型中的高通量功能筛选应用兼容。