Zhang Xuan, Bresee Jamee, Cheney Philip P, Xu Baogang, Bhowmick Manishabrata, Cudic Mare, Fields Gregg B, Edwards Wilson Barry
Department of Radiology, University of Pittsburgh, Pittsburgh, PA 15219, USA.
Department of Chemistry and Biochemistry, University of Denver, Denver, CO 80208, USA.
Molecules. 2014 Jun 23;19(6):8571-88. doi: 10.3390/molecules19068571.
Matrix metalloproteinases (MMP) 2 and 9, the gelatinases, have consistently been associated with tumor progression. The development of gelatinase-specific probes will be critical for identifying in vivo gelatinoic activity to understand the molecular role of the gelatinases in tumor development. Recently, a self-assembling homotrimeric triple-helical peptide (THP), incorporating a sequence from type V collagen, with high substrate specificity to the gelatinases has been developed. To determine whether this THP would be suitable for imaging protease activity, 5-carboxyfluorescein (5FAM) was conjugated, resulting in 5FAM3-THP and 5FAM6-THP, which were quenched up to 50%. 5FAM6-THP hydrolysis by MMP-2 and MMP-9 displayed kcat/KM values of 1.5 × 104 and 5.4 × 103 M-1 s-1, respectively. Additionally 5FAM6-THP visualized gelatinase activity in gelatinase positive HT-1080 cells, but not in gelatinase negative MCF-7 cells. Furthermore, the fluorescence in the HT-1080 cells was greatly attenuated by the addition of a MMP-2 and MMP-9 inhibitor, SB-3CT, indicating that the observed fluorescence release was mediated by gelatinase proteolysis and not non-specific proteolysis of the THPs. These results demonstrate that THPs fully substituted with fluorophores maintain their substrate specificity to the gelatinases in human cancer cells and may be useful in in vivo molecular imaging of gelatinase activity.
基质金属蛋白酶(MMP)2和9,即明胶酶,一直与肿瘤进展相关。明胶酶特异性探针的开发对于识别体内明胶酶活性以了解明胶酶在肿瘤发展中的分子作用至关重要。最近,一种自组装的同三聚体三螺旋肽(THP)已被开发出来,它包含来自V型胶原蛋白的序列,对明胶酶具有高底物特异性。为了确定这种THP是否适用于成像蛋白酶活性,将5-羧基荧光素(5FAM)进行偶联,得到5FAM3-THP和5FAM6-THP,其淬灭率高达50%。MMP-2和MMP-9对5FAM6-THP的水解分别显示出kcat/KM值为1.5×104和5.4×103 M-1 s-1。此外,5FAM6-THP在明胶酶阳性的HT-1080细胞中可显示明胶酶活性,但在明胶酶阴性的MCF-7细胞中则不能。此外,通过添加MMP-2和MMP-9抑制剂SB-3CT,HT-1080细胞中的荧光大大减弱,这表明观察到的荧光释放是由明胶酶蛋白水解介导的,而不是THP的非特异性蛋白水解。这些结果表明,完全用荧光团取代的THP在人癌细胞中保持了对明胶酶的底物特异性,并且可能在明胶酶活性的体内分子成像中有用。