Literature DB >> 10403789

Pokeweed antiviral protein isoforms PAP-I, PAP-II, and PAP-III depurinate RNA of human immunodeficiency virus (HIV)-1.

F Rajamohan1, T K Venkatachalam, J D Irvin, F M Uckun.   

Abstract

Pokeweed antiviral protein (PAP) is a naturally occurring broad-spectrum antiviral agent with potent anti-human immunodeficiency virus (HIV)-1 activity by an as yet undeciphered molecular mechanism. In the present study, we sought to determine if PAP is capable of recognizing and depurinating viral RNA. Depurination of viral RNA was monitored by directly measuring the amount of the adenine base released from the viral RNA species using quantitative high-performance liquid chromatography. Our findings presented herein provide direct evidence that three different PAP isoforms from Phytolacca americana (PAP-I from spring leaves, PAP-II from early summer leaves, and PAP-III from late summer leaves) cause concentration-dependent depurination of genomic RNA (63 to 400 pmols of adenine released per micrograms of RNA) purified from human immunodeficiency virus type-I (HIV-I), plant virus (tobacco mosaic virus (TMV), and bacteriophage (MS 2). In contrast to the three PAP isoforms, ricin A chain (RTA) failed to cause detectable depurination of viral RNA even at 5 microM, although it was as effective as PAP in inhibiting protein synthesis in cell-free translation assays. PAP-I, PAP-II, and PAP-III (but not RTA) inhibited the replication of HIV-1 in human peripheral blood mononuclear cells with IC(50) values of 17 nM, 25 nM, and 16 nM, respectively. These findings indicate that the highly conserved active site residues responsible for the depurination of rRNA by PAP or RTA are not sufficient for the recognition and depurination of viral RNA. Our study prompts the hypothesis that the potent antiviral activity of PAP may in part be due to its unique ability to extensively depurinate viral RNA, including HIV-1 RNA. Copyright 1999 Academic Press.

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Year:  1999        PMID: 10403789     DOI: 10.1006/bbrc.1999.0922

Source DB:  PubMed          Journal:  Biochem Biophys Res Commun        ISSN: 0006-291X            Impact factor:   3.575


  28 in total

Review 1.  Ribosome inactivating proteins from plants inhibiting viruses.

Authors:  Inderdeep Kaur; R C Gupta; Munish Puri
Journal:  Virol Sin       Date:  2011-12-10       Impact factor: 4.327

2.  Inhibition of pokeweed antiviral protein (PAP) by turnip mosaic virus genome-linked protein (VPg).

Authors:  Artem V Domashevskiy; Hiroshi Miyoshi; Dixie J Goss
Journal:  J Biol Chem       Date:  2012-07-06       Impact factor: 5.157

3.  X-ray crystallographic analysis of the structural basis for the interaction of pokeweed antiviral protein with guanine residues of ribosomal RNA.

Authors:  I V Kurinov; F Rajamohan; T K Venkatachalam; F M Uckun
Journal:  Protein Sci       Date:  1999-11       Impact factor: 6.725

Review 4.  Ribosome-inactivating proteins in plant biology.

Authors:  Sang-Wook Park; Ramarao Vepachedu; Neelam Sharma; Jorge M Vivanco
Journal:  Planta       Date:  2004-09-03       Impact factor: 4.116

Review 5.  The role of enzymatic activities of antiviral proteins from plants for action against plant pathogens.

Authors:  Nandlal Choudhary; M L Lodha; V K Baranwal
Journal:  3 Biotech       Date:  2020-11-04       Impact factor: 2.406

6.  Structure-based design and engineering of a nontoxic recombinant pokeweed antiviral protein with potent anti-human immunodeficiency virus activity.

Authors:  Fatih M Uckun; Francis Rajamohan; Sharon Pendergrass; Zahide Ozer; Barbara Waurzyniak; Chen Mao
Journal:  Antimicrob Agents Chemother       Date:  2003-03       Impact factor: 5.191

7.  A switch-on mechanism to activate maize ribosome-inactivating protein for targeting HIV-infected cells.

Authors:  Sue Ka-Yee Law; Rui-Rui Wang; Amanda Nga-Sze Mak; Kam-Bo Wong; Yong-Tang Zheng; Pang-Chui Shaw
Journal:  Nucleic Acids Res       Date:  2010-06-17       Impact factor: 16.971

8.  The type-1 and type-2 ribosome-inactivating proteins from Iris confer transgenic tobacco plants local but not systemic protection against viruses.

Authors:  Frank Vandenbussche; Willy J Peumans; Stijn Desmyter; Paul Proost; Marialibera Ciani; Els J M Van Damme
Journal:  Planta       Date:  2004-07-28       Impact factor: 4.116

9.  Inhibition of hepatitis B virus replication by pokeweed antiviral protein in vitro.

Authors:  Yong-Wen He; Chun-Xia Guo; Yan-Feng Pan; Cheng Peng; Zhi-Hong Weng
Journal:  World J Gastroenterol       Date:  2008-03-14       Impact factor: 5.742

10.  Suppression of human T-cell leukemia virus I gene expression by pokeweed antiviral protein.

Authors:  Sheila Mansouri; Gunjan Choudhary; Paulina M Sarzala; Lee Ratner; Katalin A Hudak
Journal:  J Biol Chem       Date:  2009-09-11       Impact factor: 5.157

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