Literature DB >> 27226955

MicroRNA-regulated viral vectors for gene therapy.

Anja Geisler1, Henry Fechner1.   

Abstract

Safe and effective gene therapy approaches require targeted tissue-specific transfer of a therapeutic transgene. Besides traditional approaches, such as transcriptional and transductional targeting, microRNA-dependent post-transcriptional suppression of transgene expression has been emerging as powerful new technology to increase the specificity of vector-mediated transgene expression. MicroRNAs are small non-coding RNAs and often expressed in a tissue-, lineage-, activation- or differentiation-specific pattern. They typically regulate gene expression by binding to imperfectly complementary sequences in the 3' untranslated region (UTR) of the mRNA. To control exogenous transgene expression, tandem repeats of artificial microRNA target sites are usually incorporated into the 3' UTR of the transgene expression cassette, leading to subsequent degradation of transgene mRNA in cells expressing the corresponding microRNA. This targeting strategy, first shown for lentiviral vectors in antigen presenting cells, has now been used for tissue-specific expression of vector-encoded therapeutic transgenes, to reduce immune response against the transgene, to control virus tropism for oncolytic virotherapy, to increase safety of live attenuated virus vaccines and to identify and select cell subsets for pluripotent stem cell therapies, respectively. This review provides an introduction into the technical mechanism underlying microRNA-regulation, highlights new developments in this field and gives an overview of applications of microRNA-regulated viral vectors for cardiac, suicide gene cancer and hematopoietic stem cell therapy, as well as for treatment of neurological and eye diseases.

Entities:  

Keywords:  Adeno-associated virus; Gene therapy; MicroRNA; MicroRNA regulation; MicroRNA target sites; RNA interference; Vector targeting; Viral vectors

Year:  2016        PMID: 27226955      PMCID: PMC4873559          DOI: 10.5493/wjem.v6.i2.37

Source DB:  PubMed          Journal:  World J Exp Med        ISSN: 2220-315X


  188 in total

1.  microRNA122-regulated transgene expression increases specificity of cardiac gene transfer upon intravenous delivery of AAV9 vectors.

Authors:  A Geisler; A Jungmann; J Kurreck; W Poller; H A Katus; R Vetter; H Fechner; O J Müller
Journal:  Gene Ther       Date:  2010-11-04       Impact factor: 5.250

2.  Improved cardiac gene transfer by transcriptional and transductional targeting of adeno-associated viral vectors.

Authors:  Oliver J Müller; Barbara Leuchs; Sven T Pleger; Dirk Grimm; Wolfgang-M Franz; Hugo A Katus; Jürgen A Kleinschmidt
Journal:  Cardiovasc Res       Date:  2006-01-31       Impact factor: 10.787

3.  Direct neural conversion from human fibroblasts using self-regulating and nonintegrating viral vectors.

Authors:  Shong Lau; Daniella Rylander Ottosson; Johan Jakobsson; Malin Parmar
Journal:  Cell Rep       Date:  2014-12-04       Impact factor: 9.423

4.  MicroRNA-124 is a subventricular zone neuronal fate determinant.

Authors:  Malin Åkerblom; Rohit Sachdeva; Isabelle Barde; Sonia Verp; Bernhard Gentner; Didier Trono; Johan Jakobsson
Journal:  J Neurosci       Date:  2012-06-27       Impact factor: 6.167

5.  Harnessing endogenous miR-181a to segregate transgenic antigen receptor expression in developing versus post-thymic T cells in murine hematopoietic chimeras.

Authors:  Eirini P Papapetrou; Damian Kovalovsky; Laurent Beloeil; Derek Sant'angelo; Michel Sadelain
Journal:  J Clin Invest       Date:  2008-12-01       Impact factor: 14.808

6.  Combinatorial control of suicide gene expression by tissue-specific promoter and microRNA regulation for cancer therapy.

Authors:  Chunxiao Wu; Jiakai Lin; Michelle Hong; Yukti Choudhury; Poonam Balani; Doreen Leung; Lam H Dang; Ying Zhao; Jieming Zeng; Shu Wang
Journal:  Mol Ther       Date:  2009-10-06       Impact factor: 11.454

7.  Anti-tumor activity of a miR-199-dependent oncolytic adenovirus.

Authors:  Elisa Callegari; Bahaeldin K Elamin; Lucilla D'Abundo; Simonetta Falzoni; Giovanna Donvito; Farzaneh Moshiri; Maddalena Milazzo; Giuseppe Altavilla; Luciano Giacomelli; Francesca Fornari; Akseli Hemminki; Francesco Di Virgilio; Laura Gramantieri; Massimo Negrini; Silvia Sabbioni
Journal:  PLoS One       Date:  2013-09-12       Impact factor: 3.240

8.  Use of microRNA Let-7 to control the replication specificity of oncolytic adenovirus in hepatocellular carcinoma cells.

Authors:  Huajun Jin; Saiqun Lv; Jiahe Yang; Xiaoning Wang; Huanzhang Hu; Changqing Su; Chengliang Zhou; Jiang Li; Yao Huang; Linfang Li; Xinyuan Liu; Mengchao Wu; Qijun Qian
Journal:  PLoS One       Date:  2011-07-21       Impact factor: 3.240

9.  Real-time quantification of microRNAs by stem-loop RT-PCR.

Authors:  Caifu Chen; Dana A Ridzon; Adam J Broomer; Zhaohui Zhou; Danny H Lee; Julie T Nguyen; Maura Barbisin; Nan Lan Xu; Vikram R Mahuvakar; Mark R Andersen; Kai Qin Lao; Kenneth J Livak; Karl J Guegler
Journal:  Nucleic Acids Res       Date:  2005-11-27       Impact factor: 16.971

10.  Cell-cycle control of microRNA-mediated translation regulation.

Authors:  Shobha Vasudevan; Yingchun Tong; Joan A Steitz
Journal:  Cell Cycle       Date:  2008-03-25       Impact factor: 4.534

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  23 in total

1.  Gene therapy for inherited arrhythmias.

Authors:  Vassilios J Bezzerides; Maksymilian Prondzynski; Lucie Carrier; William T Pu
Journal:  Cardiovasc Res       Date:  2020-07-15       Impact factor: 10.787

2.  Gene suppressing therapy for Pelizaeus-Merzbacher disease using artificial microRNA.

Authors:  Heng Li; Hironori Okada; Sadafumi Suzuki; Kazuhisa Sakai; Hitomi Izumi; Yukiko Matsushima; Noritaka Ichinohe; Yu-Ichi Goto; Takashi Okada; Ken Inoue
Journal:  JCI Insight       Date:  2019-05-16

Review 3.  Durability of transgene expression after rAAV gene therapy.

Authors:  Manish Muhuri; Daniel I Levy; Martin Schulz; Douglas McCarty; Guangping Gao
Journal:  Mol Ther       Date:  2022-03-10       Impact factor: 12.910

4.  Synthesis, Functionalization, and Characterization of Fusogenic Porous Silicon Nanoparticles for Oligonucleotide Delivery.

Authors:  Byungji Kim; Michael J Sailor
Journal:  J Vis Exp       Date:  2019-04-16       Impact factor: 1.355

5.  MicroRNAs Regulating Autophagy in Neurodegeneration.

Authors:  Qingxuan Lai; Nikolai Kovzel; Ruslan Konovalov; Ilya A Vinnikov
Journal:  Adv Exp Med Biol       Date:  2021       Impact factor: 2.622

6.  A MicroRNA-Based Gene-Targeting Tool for Virally Labeling Interneurons in the Rodent Cortex.

Authors:  Marianna K Keaveney; Hua-An Tseng; Tina L Ta; Howard J Gritton; Heng-Ye Man; Xue Han
Journal:  Cell Rep       Date:  2018-07-10       Impact factor: 9.423

Review 7.  Coxsackievirus B3-Its Potential as an Oncolytic Virus.

Authors:  Anja Geisler; Ahmet Hazini; Lisanne Heimann; Jens Kurreck; Henry Fechner
Journal:  Viruses       Date:  2021-04-21       Impact factor: 5.048

Review 8.  Adeno-Associated Virus (AAV) as a Vector for Gene Therapy.

Authors:  Michael F Naso; Brian Tomkowicz; William L Perry; William R Strohl
Journal:  BioDrugs       Date:  2017-08       Impact factor: 5.807

9.  A MicroRNA124 Target Sequence Restores Astrocyte Specificity of gfaABC1D-Driven Transgene Expression in AAV-Mediated Gene Transfer.

Authors:  Grit Taschenberger; Julia Tereshchenko; Sebastian Kügler
Journal:  Mol Ther Nucleic Acids       Date:  2017-04-06       Impact factor: 8.886

Review 10.  From Benchtop to Bedside: A Review of Oncolytic Virotherapy.

Authors:  Audrey H Choi; Michael P O'Leary; Yuman Fong; Nanhai G Chen
Journal:  Biomedicines       Date:  2016-08-02
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