Selective attachment of a microtubule interacting peptide to plasmid DNA via a triplex forming oligonucleotide for transfection improvement.


Journal

Gene therapy
ISSN: 1476-5462
Titre abrégé: Gene Ther
Pays: England
ID NLM: 9421525

Informations de publication

Date de publication:
04 2023
Historique:
received: 05 01 2022
accepted: 16 06 2022
revised: 20 05 2022
medline: 20 4 2023
pubmed: 7 7 2022
entrez: 6 7 2022
Statut: ppublish

Résumé

In nonviral gene therapy approaches, the linkage of signal molecules to plasmid DNA (pDNA) is of interest for guiding its delivery to the nucleus. Here, we report its linkage to a peptide (P

Identifiants

pubmed: 35794469
doi: 10.1038/s41434-022-00354-1
pii: 10.1038/s41434-022-00354-1
doi:

Substances chimiques

Oligonucleotides 0
DNA 9007-49-2
Peptides 0

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

271-277

Informations de copyright

© 2022. The Author(s), under exclusive licence to Springer Nature Limited.

Références

Delalande A, Bastie C, Pigeon L, Manta S, Lebertre M, Mignet N, et al. Cationic gas-filled microbubbles for ultrasound-based nucleic acids delivery. Biosci Rep. 2017;37:1–18.
Delalande A, Postema M, Mignet N, Midoux P, Pichon C. Ultrasound and microbubble-assisted gene delivery: recent advances and ongoing challenges. Ther Deliv. 2012;3:1199–215.
pubmed: 23116012 doi: 10.4155/tde.12.100
Gibot L, Rols MP. Gene transfer by pulsed electric field is highly promising in cutaneous wound healing. Expert Opin Biol Ther. 2016;16:67–77.
pubmed: 26512415 doi: 10.1517/14712598.2016.1098615
Kolosnjaj-Tabi J, Gibot L, Fourquaux I, Golzio M, Rols MP. Electric field-responsive nanoparticles and electric fields: physical, chemical, biological mechanisms and therapeutic prospects. Adv Drug Deliv Rev. 2019;138:56–67.
pubmed: 30414494 doi: 10.1016/j.addr.2018.10.017
Pasquet L, Bellard E, Chabot S, Markelc B, Rols MP, Teissie J, et al. Pre-clinical investigation of the synergy effect of interleukin-12 gene-electro-transfer during partially irreversible electropermeabilization against melanoma. J Immunother Cancer. 2019;7:161.
pubmed: 31242938 pmcid: 6595571 doi: 10.1186/s40425-019-0638-5
Rochard A, Scherman D, Bigey P. Genetic immunization with plasmid DNA mediated by electrotransfer. Hum Gene Ther. 2011;22:789–98.
pubmed: 21631165 doi: 10.1089/hum.2011.092
Sharma D, Arora S, Singh J, Layek B. A review of the tortuous path of nonviral gene delivery and recent progress. Int J Biol Macromol. 2021;183:2055–73.
pubmed: 34087309 pmcid: 8266766 doi: 10.1016/j.ijbiomac.2021.05.192
Trollet C, Bloquel C, Scherman D, Bigey P. Electrotransfer into skeletal muscle for protein expression. Curr Gene Ther. 2006;6:561–78.
pubmed: 17073602 doi: 10.2174/156652306778520656
Zhang G, Budker V, Wolff JA. High levels of foreign gene expression in hepatocytes after tail vein injections of naked plasmid DNA. Hum Gene Ther. 1999;10:1735–7.
pubmed: 10428218 doi: 10.1089/10430349950017734
Jafari M, Soltani M, Naahidi S, Karunaratne DN, Chen P. Nonviral approach for targeted nucleic acid delivery. Curr Med Chem. 2012;19:197–208.
pubmed: 22320298 doi: 10.2174/092986712803414141
Junquera E, Aicart E. Recent progress in gene therapy to deliver nucleic acids with multivalent cationic vectors. Adv Colloid Interface Sci. 2016;233:161–75.
pubmed: 26265376 doi: 10.1016/j.cis.2015.07.003
Mintzer MA, Simanek EE. Nonviral vectors for gene delivery. Chem Rev. 2009;109:259–302.
pubmed: 19053809 doi: 10.1021/cr800409e
Ogris M, Wagner E. To be targeted: is the magic bullet concept a viable option for synthetic nucleic acid therapeutics? Hum Gene Ther. 2011;22:799–807.
pubmed: 21563983 doi: 10.1089/hum.2011.065
Rezaee M, Oskuee RK, Nassirli H, Malaekeh-Nikouei B. Progress in the development of lipopolyplexes as efficient nonviral gene delivery systems. J Control Release. 2016;236:1–14.
pubmed: 27317365 doi: 10.1016/j.jconrel.2016.06.023
Thorne B, Takeya R, Vitelli F, Swanson X. Gene therapy. Adv Biochem Eng Biotechnol. 2017;165:1–49.
Tros de Ilarduya C, Sun Y, Duzgunes N. Gene delivery by lipoplexes and polyplexes. Eur J Pharm Sci. 2010;40:159–70.
pubmed: 20359532 doi: 10.1016/j.ejps.2010.03.019
Lechardeur D, Sohn KJ, Haardt M, Joshi PB, Monck M, Graham RW, et al. Metabolic instability of plasmid DNA in the cytosol: a potential barrier to gene transfer. Gene Ther. 1999;6:482–97.
pubmed: 10476208 doi: 10.1038/sj.gt.3300867
Bureau MF, Naimi S, Torero Ibad R, Seguin J, Georger C, Arnould E, et al. Intramuscular plasmid DNA electrotransfer: biodistribution and degradation. Biochim Biophys Acta. 2004;1676:138–48.
pubmed: 14746908 doi: 10.1016/j.bbaexp.2003.11.005
Lukacs GL, Haggie P, Seksek O, Lechardeur D, Freedman N, Verkman AS. Size-dependent DNA mobility in cytoplasm and nucleus. J Biol Chem. 2000;275:1625–9.
pubmed: 10636854 doi: 10.1074/jbc.275.3.1625
Bai H, Lester GMS, Petishnok LC, Dean DA. Cytoplasmic transport and nuclear import of plasmid DNA. Biosci Rep. 2017;37:1–17.
Merino-Gracia J, Garcia-Mayoral MF, Rodriguez-Crespo I. The association of viral proteins with host cell dynein components during virus infection. FEBS J. 2011;278:2997–3011.
pubmed: 21777384 pmcid: 7164101 doi: 10.1111/j.1742-4658.2011.08252.x
Engelke MF, Burckhardt CJ, Morf MK, Greber UF. The dynactin complex enhances the speed of microtubule-dependent motions of adenovirus both towards and away from the nucleus. Viruses. 2011;3:233–53.
pubmed: 21994728 pmcid: 3185697 doi: 10.3390/v3030233
Suikkanen S, Aaltonen T, Nevalainen M, Valilehto O, Lindholm L, Vuento M, et al. Exploitation of microtubule cytoskeleton and dynein during parvoviral traffic toward the nucleus. J Virol. 2003;77:10270–9.
pubmed: 12970411 pmcid: 228505 doi: 10.1128/JVI.77.19.10270-10279.2003
Midoux P, Pigeon L, Goncalves C, Pichon C. Peptides mediating DNA transport on microtubules and their impact on non-viral gene transfer efficiency. Biosci Rep. 2017;37:1–16.
Pigeon L, Goncalves C, Gosset D, Pichon C, Midoux P. An E3-14.7K peptide that promotes microtubules-mediated transport of plasmid DNA increases polyplexes transfection efficiency. Small. 2013;9:3845–51.
pubmed: 23661626 doi: 10.1002/smll.201300217
Horwitz MS. Function of adenovirus E3 proteins and their interactions with immunoregulatory cell proteins. J Gene Med. 2004;6:S172–83.
pubmed: 14978760 doi: 10.1002/jgm.495
Slattum PS, Loomis AG, Machnik KJ, Watt MA, Duzeski JL, Budker VG, et al. Efficient in vitro and in vivo expression of covalently modified plasmid DNA. Mol Ther. 2003;8:255–63.
pubmed: 12907148 doi: 10.1016/S1525-0016(03)00152-7
Neves C, Byk G, Scherman D, Wils P. Coupling of a targeting peptide to plasmid DNA by covalent triple helix formation. FEBS Lett. 1999;453:41–5.
pubmed: 10403371 doi: 10.1016/S0014-5793(99)00674-2
Branden LJ, Mohamed AJ, Smith CI. A peptide nucleic acid-nuclear localization signal fusion that mediates nuclear transport of DNA. Nat Biotechnol. 1999;17:784–7.
pubmed: 10429244 doi: 10.1038/11726
Roulon T, Coulaud D, Delain E, Le Cam E, Helene C, Escude C. Padlock oligonucleotides as a tool for labeling superhelical DNA. Nucleic Acids Res. 2002;30:E12.
pubmed: 11809900 pmcid: 100311 doi: 10.1093/nar/30.3.e12
Roulon T, Helene C, Escude C. Coupling of a targeting peptide to plasmid DNA using a new type of padlock oligonucleotide. Bioconjug Chem. 2002;13:1134–9.
pubmed: 12236796 doi: 10.1021/bc025551o
Cozens AL, Yezzi MJ, Kunzelmann K, Ohrui T, Chin L, Eng K, et al. CFTR expression and chloride secretion in polarized immortal human bronchial epithelial cells. Am J Respir Cell Mol Biol. 1994;10:38–47.
pubmed: 7507342 doi: 10.1165/ajrcmb.10.1.7507342
Bertrand E, Goncalves C, Billiet L, Gomez JP, Pichon C, Cheradame H, et al. Histidinylated linear PEI: a new efficient non-toxic polymer for gene transfer. Chem Commun. 2011;47:12547–9.
doi: 10.1039/c1cc15716g
Goncalves C, Gross F, Guegan P, Cheradame H, Midou P. A robust transfection reagent for the transfection of CHO and HEK293 cells and production of recombinant proteins and lentiviral particles - PTG1. Biotechnol J. 2014;9:1380–8.
pubmed: 25215936 doi: 10.1002/biot.201400324
Gomez JP, Tresset G, Pichon C, Midoux P. Improved histidinylated lPEI polyplexes for skeletal muscle cells transfection. Int J Pharm. 2019;559:58–67.
pubmed: 30654063 doi: 10.1016/j.ijpharm.2019.01.003
Kilkenny C, Browne WJ, Cuthill IC, Emerson M, Altman DG. Improving bioscience research reporting: the ARRIVE guidelines for reporting animal research. PLoS Biol. 2010;8:e1000412.
pubmed: 20613859 pmcid: 2893951 doi: 10.1371/journal.pbio.1000412
Zhang G, Wooddell CI, Hegge JO, Griffin JB, Huss T, Braun S, et al. Functional efficacy of dystrophin expression from plasmids delivered to mdx mice by hydrodynamic limb vein injection. Hum Gene Ther. 2010;21:221–37.
pubmed: 19788386 doi: 10.1089/hum.2009.133
Le Guen YT, Le Gall T, Midoux P, Guegan P, Braun S, Montier T. Gene transfer to skeletal muscle using hydrodynamic limb vein injection: current applications, hurdles and possible optimizations. J Gene Med. 2020;22:e3150.
pubmed: 31785130
Zelphati O, Liang X, Hobart P, Felgner PL. Gene chemistry: functionally and conformationally intact fluorescent plasmid DNA. Hum Gene Ther. 1999;10:15–24.
pubmed: 10022527 doi: 10.1089/10430349950019156
Miyashita K, Rahman SM, Seki S, Obika S, Imanishi T. N-Methyl substituted 2’,4’- BNANC: a highly nuclease-resistant nucleic acid analogue with high-affinity RNA selective hybridization. Chem Commun. 2007;36:3765–7.
doi: 10.1039/b707352f
Rahman SM, Seki S, Obika S, Haitani S, Miyashita K, Imanishi T. Highly stable pyrimidine-motif triplex formation at physiological pH values by a bridged nucleic acid analogue. Angew Chem Int Ed Engl. 2007;46:4306–9.
pubmed: 17469090 doi: 10.1002/anie.200604857
Rahman SM, Seki S, Utsuki K, Obika S, Miyashita K, Imanishi T. Synthesis and properties of 2’,4’-BNA(NC), a second generation BNA. Nucleic Acids Symp Ser. 2005;49:5–6.
doi: 10.1093/nass/49.1.5
Hertoghs KM, Ellis JH, Catchpole IR. Use of locked nucleic acid oligonucleotides to add functionality to plasmid DNA. Nucleic Acids Res. 2003;31:5817–30.
pubmed: 14530430 pmcid: 219479 doi: 10.1093/nar/gkg801
Fan Z, Kocis K, Valley R, Howard JF, Chopra M, An H, et al. Safety and feasibility of high-pressure transvenous limb perfusion with 0.9% saline in human muscular dystrophy. Mol Ther. 2012;20:456–61.
pubmed: 21772257 doi: 10.1038/mt.2011.137
Fan Z, Kocis K, Valley R, Howard JF Jr, Chopra M, Chen Y, et al. High-pressure transvenous perfusion of the upper extremity in human muscular dystrophy: a safety study with 0.9% saline. Hum Gene Ther. 2015;26:614–21.
pubmed: 25953425 pmcid: 4575535 doi: 10.1089/hum.2015.023
Hagstrom JE, Hegge J, Zhang G, Noble M, Budker V, Lewis DL, et al. A facile nonviral method for delivering genes and siRNAs to skeletal muscle of mammalian limbs. Mol Ther. 2004;10:386–98.
pubmed: 15294185 doi: 10.1016/j.ymthe.2004.05.004
Hegge JO, Wooddell CI, Zhang G, Hagstrom JE, Braun S, Huss T, et al. Evaluation of hydrodynamic limb vein injections in nonhuman primates. Hum Gene Ther. 2010;21:829–42.
pubmed: 20163248 pmcid: 2938361 doi: 10.1089/hum.2009.172
Le Guen YT, Pichon C, Guegan P, Pluchon K, Haute T, Quemener S, et al. DNA nuclear targeting sequences for enhanced non-viral gene transfer: an in vitro and in vivo study. Mol Ther Nucleic Acids. 2021;24:477–86.
pubmed: 33898102 pmcid: 8053784 doi: 10.1016/j.omtn.2021.03.012

Auteurs

Caroline Girardin (C)

Centre de Biophysique Moléculaire, CNRS UPR4301, Inserm and University of Orléans, 45071, Orléans cedex 02, France.

Delphine Maze (D)

Centre de Biophysique Moléculaire, CNRS UPR4301, Inserm and University of Orléans, 45071, Orléans cedex 02, France.

Cristine Gonçalves (C)

Centre de Biophysique Moléculaire, CNRS UPR4301, Inserm and University of Orléans, 45071, Orléans cedex 02, France.

Yann Thierry Le Guen (YT)

Univ Brest, INSERM, EFS, UMR 1078, GGB - GTCA Team, F-29200, Brest, France.

Kevin Pluchon (K)

Univ Brest, INSERM, EFS, UMR 1078, GGB - GTCA Team, F-29200, Brest, France.

Chantal Pichon (C)

Centre de Biophysique Moléculaire, CNRS UPR4301, Inserm and University of Orléans, 45071, Orléans cedex 02, France.

Tristan Montier (T)

Univ Brest, INSERM, EFS, UMR 1078, GGB - GTCA Team, F-29200, Brest, France. Tristan.Montier@univ-brest.fr.
Service de Génétique Médicale et Biologie de la Reproduction, Centre de référence des maladies rares 'Maladies neuromusculaires', CHRU de Brest, F-29200, Brest, France. Tristan.Montier@univ-brest.fr.

Patrick Midoux (P)

Centre de Biophysique Moléculaire, CNRS UPR4301, Inserm and University of Orléans, 45071, Orléans cedex 02, France. patrick.midoux@cnrs.fr.

Articles similaires

Robotic Surgical Procedures Animals Humans Telemedicine Models, Animal

Odour generalisation and detection dog training.

Lyn Caldicott, Thomas W Pike, Helen E Zulch et al.
1.00
Animals Odorants Dogs Generalization, Psychological Smell
Animals TOR Serine-Threonine Kinases Colorectal Neoplasms Colitis Mice
Animals Tail Swine Behavior, Animal Animal Husbandry

Classifications MeSH