| Literature DB >> 31409839 |
Alberto Macone1, Silvia Masciarelli2, Federica Palombarini3, Deborah Quaglio4, Alberto Boffi3, Matilde Cardoso Trabuco5, Paola Baiocco5, Francesco Fazi2, Alessandra Bonamore6.
Abstract
In this work, we have exploited the unique properties of a chimeric archaeal-human ferritin to encapsulate, deliver and release cytochrome c and induce apoptosis in a myeloid leukemia cell line. The chimeric protein combines the versatility in 24-meric assembly and cargo incorporation capability of Archaeglobus fulgidus ferritin with specific binding of human H ferritin to CD71, the "heavy duty" carrier responsible for transferrin-iron uptake. Delivery of ferritin-encapsulated cytochrome C to the Acute Promyelocytic Leukemia (APL) NB4 cell line, highly resistant to transfection by conventional methods, was successfully achieved in vitro. The effective liberation of cytochrome C within the cytosolic environment, demonstrated by double fluorescent labelling, induced apoptosis in the cancer cells.Entities:
Mesh:
Substances:
Year: 2019 PMID: 31409839 PMCID: PMC6692331 DOI: 10.1038/s41598-019-48037-z
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1HumFt-Cyt C complex formation. HumFt was dissociated at low ionic strength and re-associated by adding MgCl2 in the presence of cytochrome C. In these experimental conditions Cyt C is encapsulated inside the protein cavity.
Figure 2HP-SEC of the complex S-CMHumFt-FITC and Cyt C-Alexa Fluor 555. (A) Elution profile of the complex followed at 220 nm: the main peak (5.8 min) corresponds to ferritin 24-mer. (B) Elution profile of the complex followed at 410 nm. At this wavelength, corresponding to the maximum absorption of Cyt C, two peaks can be detected: the first one (5.8 min) is due to Cyt c encapsulated inside the ferritin cavity (empty S-CMHumFt shows no signal at this wavelength) and the second one (8.3 min) corresponds to free Cyt C. Free Cyt C concentration is always lower than the encapsulated one. (C) Elution profile of the complex with ferritin labelled with fluoresceine (λex = 490 nm, λem = 525 nm). (D) Elution profile of the complex with Cyt C labelled with Alexa Fluor 555 (λex = 555 nm, λem = 580 nm). Even in this case two peaks can be detected: the first one (5.8 min) is due to Alexa Fluor 555 labeled Cyt C encapsulated inside the ferritin cavity (empty S-CMHumFt shows no signal at this wavelength) and the second one (8.3 min) corresponds to free labeled Cyt C.
Figure 3Confocal microscopy of APL NB4 cells treated with S-CMHumFt-FITC and S-CMHumFt-Cyt C 555. Cytochrome C labeled with AlexaFluor 555 is delivered into the APL NB4 cell line by S-CMHumFt leading to apoptotic cell death. NB4 cells were cultured in the presence of 150 μg/mL S-CMHumFt-FITC (upper panels) or of 150 μg/mL S-CMHumFt loaded with cytochrome C-AlexaFluor 555 (lower panels) for 24 hours and analyzed by confocal microscopy, after labeling the DNA with the TOTO-3 dye. All the cells that internalized detectable amounts of Cyt C 555 presented apoptotic nuclei as indicated by nuclear condensation (white arrows). On the contrary, even the cells that internalized high amounts of S-CMHumFt-FITC alone showed vital, uncondensed nuclei (green arrows). The panels on the right show an enlargement of the cells into the insets.