Key Laboratory of Biomaterials and Biofabrication in Tissue Engineering of Jiangxi Province, Gannan Medical University, Ganzhou 341000, People's Republic of China; School of Medical Information Engineering, Gannan Medical University, Ganzhou 341000, People's Republic of China; Key Laboratory of Prevention and Treatment of Cardiovascular and Cerebrovascular Diseases Ministry of Education, Gannan Medical University, Ganzhou 341000, People's Republic of China.
Key Laboratory of Biomaterials and Biofabrication in Tissue Engineering of Jiangxi Province, Gannan Medical University, Ganzhou 341000, People's Republic of China; School of Rehabilitation, Gannan Medical University, Ganzhou 341000, People's Republic of China.
Ultramicroscopy. 2024 Sep;263:113986. doi: 10.1016/j.ultramic.2024.113986. Epub 2024 May 15.
Nucleolin is overexpressed on the surface of pancreatic cancer cells and are regarded as the remarkable therapeutic target. Aptamers are capable of binding the external domain of nucleolin on the cell surface with high affinity and specificity. But nucleolin has not been localized on pancreatic cancer cells at very high spatial resolution, and the interactions between nucleolin and aptamers have not been investigated at very high force resolution level. In this work, nucleolin was localized on pancreatic cancer and normal cells by aptamers (9FU-AS1411-NH, AS1411-NH and CRONH) in Single Molecule Recognition Imaging mode of Atomic Force Microscopy. There are plenty of nucleolin on the surfaces of pancreatic cancer cells (area percentage about 5 %), while there are little nucleolin on the surfaces of normal cells. The interactions between three types of aptamers and nucleolins on the surfaces of pancreatic cancer cells were investigated by Single Molecule Force Spectroscopy. The unbinding forces of nucleolins-(9FU-AS1411-NH) are larger than nucleolins-(AS1411-NH). The dissociation activation energy on nucleolin-(9FU-AS1411-NH) is higher than nucleolin-(AS1411-NH), which indicates that the former complex is more stable and harder to dissociate than the later complex. There are no unbinding forces between nucleolin and CRONH. All these demonstrate that nucleolin was localized on pancreatic cancer and normal cells at single molecule level quantitatively, and the interactions (unbinding forces and kinetics) between nucleolin and aptamers were studied at picoNewton level. The approaches and results of this work will pave new ways in the investigations of nucleolin and aptamers, and will also be useful in the studies on other proteins and their corresponding aptamers.
核仁素在胰腺癌细胞表面过表达,被认为是显著的治疗靶点。适体能够以高亲和力和特异性结合细胞表面核仁素的外域。但是,核仁素在胰腺癌细胞上还没有被高空间分辨率定位,核仁素与适体之间的相互作用也没有在高力分辨率水平上进行研究。在这项工作中,核仁素通过适体(9FU-AS1411-NH、AS1411-NH 和 CRONH)在原子力显微镜的单分子识别成像模式下被定位在胰腺癌细胞和正常细胞上。在胰腺癌细胞表面有大量的核仁素(面积百分比约为 5%),而在正常细胞表面有少量的核仁素。通过单分子力谱法研究了三种适体与胰腺癌细胞表面核仁素的相互作用。核仁素-(9FU-AS1411-NH)的解结合力大于核仁素-(AS1411-NH)。核仁素-(9FU-AS1411-NH)的解离激活能高于核仁素-(AS1411-NH),这表明前者的复合物比后者的复合物更稳定,更难解离。核仁素与 CRONH 之间没有解结合力。所有这些都表明,核仁素在单分子水平上被定量地定位在胰腺癌细胞和正常细胞上,并且在皮牛顿水平上研究了核仁素与适体之间的相互作用(解结合力和动力学)。这项工作的方法和结果将为核仁素和适体的研究开辟新的途径,也将有助于其他蛋白质及其相应适体的研究。