dbacp06908
General Description
Peptide name : LFchimera
Source/Organism : Synthetic - Lectoferrin chimera
Linear/Cyclic : Linear
Chirality : L
Sequence Information
Sequence : FKCRRWQWRMKKLG-K-RSKNKGFKEQAKSLLKWILD
Peptide length: Not available
C-terminal modification: Linear
N-terminal modification : Amidation
Non-natural peptide information:
Activity Information
Assay type : MTT assay
Assay time : 12-h
Activity : cell viability ~ 44% at 10 µM
Cell line : HepG-2
Cancer type : Liver Cancer
Other activity : Antimicrobial
Physicochemical Properties
Amino Acid Composition Bar Chart : Not available
Molecular mass : Not available
Aliphatic index : Not available
Instability index : Not available
Hydrophobicity (GRAVY) : Not available
Isoelectric point : Not available
Charge (pH 7) : Not available
Aromaticity : Not available
Molar extinction coefficient (cysteine, cystine): Not available
Hydrophobic/hydrophilic ratio : Not available
hydrophobic moment : Not available
Missing amino acid : Not available
Most occurring amino acid : Not available
Most occurring amino acid frequency : Not available
Least occurring amino acid : Not available
Least occurring amino acid frequency : Not available
Structural Information
3D-structure: Not available
Secondary structure fraction (Helix, Turn, Sheet): Not available
SMILES Notation: Not available
Secondary Structure :
| Method | Prediction |
|---|---|
| GOR | Not available |
| Chou-Fasman (CF) | Not available |
| Neural Network (NN) | Not available |
| Joint/Consensus | Not available |
Molecular Descriptors and ADMET Properties
Molecular descriptors: Not available
ADMET properties: Not available
Cross Referencing Databases databases
Pubmed Id : 36626098.0, .
Uniprot : Not available
CancerPPD : Not available
ApIAPDB : Not available
Reference
1 : Arredondo-Beltrán IG, et al. Antitumor activity of bovine lactoferrin and its derived peptides against HepG2 liver cancer cells and Jurkat leukemia cells. Biometals. 2023; 36:639-655. doi: 10.1007/s10534-022-00484-4
Literature
Paper title : Antitumor activity of bovine lactoferrin and its derived peptides against HepG2 liver cancer cells and Jurkat leukemia cells.
Doi : https://doi.org/10.1007/s10534-022-00484-4
Abstract : Liver cancer and leukemia are the fourth and first causes, respectively, of cancer death in children and adults worldwide. Moreover, cancer treatments, although beneficial, remain expensive, invasive, toxic, and affect the patient's quality of life. Therefore, new anticancer agents are needed to improve existing agents. Because bovine lactoferrin (bLF) and its derived peptides have antitumor properties, we investigated the anticancer effect of bLF and LF peptides (LFcin17-30, LFampin265-284 and LFchimera) on liver cancer HepG2 cells and leukemia Jurkat cells. HepG2 and Jurkat cells were incubated with bLF and LF peptides. Cell proliferation was quantified by an MTT assay, and cell morphology and damage were visualized by light microscopy or by phalloidin-TRITC/DAPI staining. The discrimination between apoptosis/necrosis was performed by staining with Annexin V-Alexa Fluor 488 and propidium iodide, and the expression of genes related to apoptosis was analyzed in Jurkat cells. Finally, the synergistic interaction of bLF and LF peptides with cisplatin or etoposide was assessed by an MTT assay and the combination index. The present study demonstrated that bLF and LF peptides inhibited the viability of HepG2 and Jurkat cells, inducing damage to the cell monolayer of HepG2 cells and morphological changes in both cell lines. bLF, LFcin17-30, and LFampin265-284 triggered apoptosis in both cell lines, whereas LFchimera induced necrosis. These results suggested that bLF and LF peptides activate apoptosis by increasing the expression of genes of the intrinsic pathway. Additionally, bLF and LF peptides synergistically interacted with cisplatin and etoposide. In conclusion, bLF and LF peptides display anticancer activity against liver cancer and leukemia cells, representing an alternative or improvement in cancer treatment.