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磷光铂卟啉与肽、蛋白质及自组装蛋白质纳米颗粒的金属螯合偶联

Metallochelate Coupling of Phosphorescent Pt-Porphyrins to Peptides, Proteins, and Self-Assembling Protein Nanoparticles.

作者信息

Dmitriev Ruslan I, O'Donnell Neil, Papkovsky Dmitri B

机构信息

School of Biochemistry and Cell Biology, ABCRF, University College Cork , Cork, Ireland.

出版信息

Bioconjug Chem. 2016 Feb 17;27(2):439-45. doi: 10.1021/acs.bioconjchem.5b00535. Epub 2016 Jan 4.

Abstract

Specific and reversible metallochelate coupling via nitrilotriacetate (NTA) moiety is widely used for immobilization, purification, and labeling of oligo(histidine)-tagged proteins. Here, we evaluated this strategy to label various peptides and proteins with phosphorescent Pt-porphyrin derivatives bearing NTA group(s). Zn(2+) complexes were shown to have minimal effect on the photophysics of the porphyrin moiety, allowing quenched-phosphorescence sensing of O2. We complexed the PtTFPP-NTA conjugate with His-containing peptide that can facilitate intracellular loading, and observed efficient accumulation and phosphorescent staining of MEF cells. The more hydrophilic PtCP-NTA conjugate was also seen to form stable complexes with larger polypeptide constructs based on fluorescent proteins, and with subunits of protein nanoparticles, which retained their ability to self-assemble. Testing in phosphorescence lifetime based O2 sensing assays on a fluorescence reader and PLIM microscope revealed that phosphorescent metallochelate complexes perform similarly to the existing O2 probes. Thus, metallochelate coupling allows simple preparation of different types of biomaterials labeled with phosphorescent Pt-porphyrins.

摘要

通过次氮基三乙酸(NTA)部分进行的特异性和可逆金属螯合物偶联被广泛用于固定、纯化和标记带有寡聚组氨酸标签的蛋白质。在此,我们评估了该策略,以用带有NTA基团的磷光铂卟啉衍生物标记各种肽和蛋白质。锌(2+)配合物对卟啉部分的光物理性质影响最小,从而实现对O2的猝灭磷光传感。我们将PtTFPP-NTA共轭物与可促进细胞内加载的含组氨酸肽络合,并观察到MEF细胞的有效积累和磷光染色。还发现亲水性更强的PtCP-NTA共轭物能与基于荧光蛋白的更大多肽构建体以及蛋白质纳米颗粒的亚基形成稳定络合物,这些构建体保留了自组装能力。在荧光读数器和PLIM显微镜上基于磷光寿命的O2传感测定中进行测试表明,磷光金属螯合物配合物的性能与现有的O2探针相似。因此,金属螯合物偶联允许简单地制备用磷光铂卟啉标记的不同类型生物材料。

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