Literature DB >> 17196289

The taming of the cell penetrating domain of the HIV Tat: myths and realities.

Ashok Chauhan1, Akshay Tikoo, Arvinder K Kapur, Mahavir Singh.   

Abstract

Protein transduction with cell penetrating peptides over the past several years has been shown to be an effective way of delivering proteins in vitro and now several reports have also shown valuable in vivo applications in correcting disease states. An impressive bioinspired phenomenon of crossing biological barriers came from HIV transactivator Tat protein. Specifically, the protein transduction domain of HIV Tat has been shown to be a potent pleiotropic peptide in protein delivery. Various approaches such as molecular modeling, arginine guanidinium head group structural strategy, multimerization of PTD sequence and phage display system have been applied for taming of the PTD. This has resulted in identification of PTD variants which are efficient in cell membrane penetration and cytoplasmic delivery. In spite of these state of the art technologies, the dilemma of low protein transduction efficiency and target specific delivery of PTD fusion proteins remains unsolved. Moreover, some misconceptions about PTD of Tat in the literature require considerations. We have assembled critical information on secretory, plasma membrane penetration and transcellular properties of Tat and PTD using molecular analysis and available experimental evidences.

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Year:  2006        PMID: 17196289      PMCID: PMC1859861          DOI: 10.1016/j.jconrel.2006.10.031

Source DB:  PubMed          Journal:  J Control Release        ISSN: 0168-3659            Impact factor:   9.776


  180 in total

1.  Neurodegeneration prevented by lentiviral vector delivery of GDNF in primate models of Parkinson's disease.

Authors:  J H Kordower; M E Emborg; J Bloch; S Y Ma; Y Chu; L Leventhal; J McBride; E Y Chen; S Palfi; B Z Roitberg; W D Brown; J E Holden; R Pyzalski; M D Taylor; P Carvey; Z Ling; D Trono; P Hantraye; N Déglon; P Aebischer
Journal:  Science       Date:  2000-10-27       Impact factor: 47.728

Review 2.  Guanidinium rich peptide transporters and drug delivery.

Authors:  Lee R Wright; Jonathan B Rothbard; Paul A Wender
Journal:  Curr Protein Pept Sci       Date:  2003-04       Impact factor: 3.272

3.  A combinatorial approach to the discovery of efficient cationic peptoid reagents for gene delivery.

Authors:  J E Murphy; T Uno; J D Hamer; F E Cohen; V Dwarki; R N Zuckermann
Journal:  Proc Natl Acad Sci U S A       Date:  1998-02-17       Impact factor: 11.205

4.  Intercellular delivery of functional p53 by the herpesvirus protein VP22.

Authors:  A Phelan; G Elliott; P O'Hare
Journal:  Nat Biotechnol       Date:  1998-05       Impact factor: 54.908

5.  Intravenous TAT-GDNF is protective after focal cerebral ischemia in mice.

Authors:  Ulkan Kilic; Ertugrul Kilic; Gunnar P H Dietz; Mathias Bähr
Journal:  Stroke       Date:  2003-04-03       Impact factor: 7.914

6.  Dendritic cells transduced with TAT protein transduction domain-containing tyrosinase-related protein 2 vaccinate against murine melanoma.

Authors:  Naotaka Shibagaki; Mark C Udey
Journal:  Eur J Immunol       Date:  2003-04       Impact factor: 5.532

7.  Cellular uptake and spread of the cell-permeable peptide penetratin in adult rat brain.

Authors:  S J Bolton; D N Jones; J G Darker; D S Eggleston; A J Hunter; F S Walsh
Journal:  Eur J Neurosci       Date:  2000-08       Impact factor: 3.386

8.  Adeno-associated virus vector-mediated bcl-2 gene transfer into post-ischemic gerbil brain in vivo: prospects for gene therapy of ischemia-induced neuronal death.

Authors:  K Shimazaki; M Urabe; J Monahan; K Ozawa; N Kawai
Journal:  Gene Ther       Date:  2000-07       Impact factor: 5.250

9.  Intravitreal gene therapy reduces lysosomal storage in specific areas of the CNS in mucopolysaccharidosis VII mice.

Authors:  Anne K Hennig; Beth Levy; Judith Mosinger Ogilvie; Carole A Vogler; Nancy Galvin; Steven Bassnett; Mark S Sands
Journal:  J Neurosci       Date:  2003-04-15       Impact factor: 6.167

10.  Intracellular human immunodeficiency virus Tat expression in astrocytes promotes astrocyte survival but induces potent neurotoxicity at distant sites via axonal transport.

Authors:  Ashok Chauhan; Jadwiga Turchan; Chava Pocernich; Anna Bruce-Keller; Susan Roth; D Allan Butterfield; Eugene O Major; Avindra Nath
Journal:  J Biol Chem       Date:  2003-01-24       Impact factor: 5.157

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  49 in total

Review 1.  Targeting antibodies to the cytoplasm.

Authors:  Andrea L J Marschall; André Frenzel; Thomas Schirrmann; Manuela Schüngel; Stefan Dübel
Journal:  MAbs       Date:  2011-01-01       Impact factor: 5.857

Review 2.  Transcription factor decoy: a pre-transcriptional approach for gene downregulation purpose in cancer.

Authors:  Seyed Mohammad Ali Hosseini Rad; Lida Langroudi; Fatemeh Kouhkan; Laleh Yazdani; Alireza Nouri Koupaee; Sara Asgharpour; Zahra Shojaei; Taravat Bamdad; Ehsan Arefian
Journal:  Tumour Biol       Date:  2015-04-04

3.  Myristoyl-based transport of peptides into living cells.

Authors:  Allison R Nelson; Laura Borland; Nancy L Allbritton; Christopher E Sims
Journal:  Biochemistry       Date:  2007-11-29       Impact factor: 3.162

4.  Molecular dynamics simulations suggest a mechanism for translocation of the HIV-1 TAT peptide across lipid membranes.

Authors:  Henry D Herce; Angel E Garcia
Journal:  Proc Natl Acad Sci U S A       Date:  2007-12-18       Impact factor: 11.205

Review 5.  Alternate routes for drug delivery to the cell interior: pathways to the Golgi apparatus and endoplasmic reticulum.

Authors:  Maria Teresa Tarragó-Trani; Brian Storrie
Journal:  Adv Drug Deliv Rev       Date:  2007-06-28       Impact factor: 15.470

6.  Cytotoxic ribonucleases: the dichotomy of Coulombic forces.

Authors:  R Jeremy Johnson; Tzu-Yuan Chao; Luke D Lavis; Ronald T Raines
Journal:  Biochemistry       Date:  2007-08-18       Impact factor: 3.162

7.  Single quantum dot tracking reveals that an individual multivalent HIV-1 Tat protein transduction domain can activate machinery for lateral transport and endocytosis.

Authors:  Yasuhiro Suzuki; Chandra Nath Roy; Warunya Promjunyakul; Hiroyasu Hatakeyama; Kohsuke Gonda; Junji Imamura; Biju Vasudevanpillai; Noriaki Ohuchi; Makoto Kanzaki; Hideo Higuchi; Mitsuo Kaku
Journal:  Mol Cell Biol       Date:  2013-06-03       Impact factor: 4.272

8.  Rational design of a biomimetic cell penetrating peptide library.

Authors:  Emmanouil D Karagiannis; Aleksandra M Urbanska; Gaurav Sahay; Jeisa M Pelet; Siddharth Jhunjhunwala; Robert Langer; Daniel G Anderson
Journal:  ACS Nano       Date:  2013-09-30       Impact factor: 15.881

9.  TAT peptide and its conjugates: proteolytic stability.

Authors:  Jacob Grunwald; Tomas Rejtar; Rupa Sawant; Zhouxi Wang; Vladimir P Torchilin
Journal:  Bioconjug Chem       Date:  2009-07-14       Impact factor: 4.774

10.  TAT-mediated intracellular protein delivery to primary brain cells is dependent on glycosaminoglycan expression.

Authors:  Melissa J Simon; Shan Gao; Woo Hyeun Kang; Scott Banta; Barclay Morrison
Journal:  Biotechnol Bioeng       Date:  2009-09-01       Impact factor: 4.530

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