| Literature DB >> 22136342 |
Neus Ferrer-Miralles1, José Luis Corchero, Pradeep Kumar, Juan A Cedano, Kailash C Gupta, Antonio Villaverde, Esther Vazquez.
Abstract
Histidine-rich peptides are commonly used in recombinant protein production as purification tags, allowing the one-step affinity separation of the His-tagged proteins from the extracellular media or cell extracts. Genetic engineering makes feasible the post-purification His-tag removal by inserting, between the tag and the main protein body, a target site for trans-acting proteases or a self-proteolytic peptide with regulatable activities. However, for technical ease, His tags are often not removed and the fusion proteins eventually used in this form. In this commentary, we revise the powerful biological properties of histidine-rich peptides as endosomolytic agents and as architectonic tags in nanoparticle formation, for which they are exploited in drug delivery and other nanomedical applications. These activities, generally unknown to biotechnologists, can unwillingly modulate the functionality and biotechnological performance of recombinant proteins in which they remain trivially attached.Entities:
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Year: 2011 PMID: 22136342 PMCID: PMC3339332 DOI: 10.1186/1475-2859-10-101
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Representative examples of His-rich peptides used in biotechnology as affinity tags for protein purification.
| Protein | Tag sequence | Position in the fusion protein | Tag removal | Use or biological activity | # of His residues | Reference or PDB entry |
|---|---|---|---|---|---|---|
| GFP | H6-N1-H6 | C | No | Protein immobilization | 12 | [ |
| N-acetiltransferase (PA4794) | GSS-H6 | N | No | Putative antibiotic resistance protein | 6 | 3KKW |
| Toxoflavin-degrading enzyme (TxDE) | H8 | C | No | Phytotoxin degradation | 8 | [ |
| Affibody | HEHEHE | N | No | 3 | [ | |
| Antibody | H6 | C | No | Antibody Against HER3 and EGFR | 6 | [ |
| Low-density lipoprotein receptor-related protein 6 | H8 | N | No | Blood brain barrier crossing | 8 | [ |
| eEF-2K | thioredoxin-H6 | N | Yes | Modulation of rate of protein synthesis | 6 | [ |
| Human peripheral cannabinoid receptor (CB2) | H10 | C | Yes | Intracellular signal transduction | 10 | [ |
| Serine protease granzyme B (grB) | H6 | N | Yes | Apoptosis inducer | 6 | [ |
| Human granulocyte macrophage colony stimulating factor (hGMCSF) | H6 | N | Yes | Cytokine | 6 | [ |
Representative examples of His-rich peptides used in nanomedicine as endosomolytic agents.
| Type of construct | Tag sequence | Experimental model | # of His residues | References |
|---|---|---|---|---|
| pDNA/siRNA +peptide | CHK6HC | In vitro, HepG2, COS 7, and CHO cells, 10X more expression than w/o histidine | 2-12 | [ |
| pDNA + peptide +lactosylated polylysine | H5WYG (23 aas; GLFHAIAHFIHGGWHGLIHGWYG) | In vitro, HepG2, B16 and Rb-1cells, 93-2150X more expression than control, with serum. | 5 | [ |
| MS2 VLPs-peptide | In Hep3B cells mediate endosomal escape that doesn't occur without the peptide. | 5 | [ | |
| pDNA+ PEG-H5WYG | CHO cells; increase expression 2-5 fold. | 5 | [ | |
| Lipopeptide + pDNA | Lau/PalCK3H2 | In vitro, COS 7 cells, similar results to PEI, lipofectamine | 2 | [ |
| pDNA + peptide | LAH4 (26 aas; KKALLALALHHLAHLALHLALALKKA) | In vitro, human hepatocarcinoma cells, 10× more expression than lipofectamine. | 4 | [ |
| Chitosan-CH + pDNA | Chitosan-CH | In vitro, HEK293 cells, increases expression up to 50-fold over chitosan alone. | 1 | [ |
| Chit. 4 gen KH dendron + pDNA | Chitosan dendron improves escape over Chitosan-CH | 1 | [ | |
| pDNA + peptide | Tat-H10 | In vitro, in U251, H4, T98G and C6 cell lines, up to 7000-fold improvement. In vivo, in rat intrastriatum injection. | 10 | [ |
| FuGENE lipid+ peptide+ pDNA | In vitro in 5 different cell lines, significant improvement over pDNA+ peptide alone | 10 | [ | |
| CM-PLH+PbAE+pDNA | Polymer CM-PLH | In vitro, in HEK293 and B16-F10 cells, and in vivo, i.v. mice injection; higher transfection efficiency over PbAE alone | 1 | [ |
| STR-CH2R4H2C +pDNA | STR-CH2R4H2C | In vitro, COS-7 cells, improves lipofectamine levels of expression. | 2 | [ |
| (KHKHKHKHKK)6-FGF2 + pDNA | KHKHKHKHKK | In vitro, NIH 3T3, T-47D and COS-1 cells; expression is detected in 15-41% of cells, but not quantitated; no serum. | 24 | [ |
Abbreviations: aas, amino acids; pDNA, plasmid DNA; PEI, poly (ethylene imine); aas, aminoacids; Lau, lauryl; Pal, palmytoil; chit. 4 gen, chitosan 4 generation; CM-PLH, carboxymethyl poly (L- histidine); PbAE, poly (β-amino ester); STR, staeroyl; FGF-2, fibroblast growth factor-2.