Literature DB >> 22514343

Aptamer that binds to the gD protein of herpes simplex virus 1 and efficiently inhibits viral entry.

Subash C B Gopinath1, Kyoko Hayashi, Penmetcha K R Kumar.   

Abstract

The ectodomain of the gD protein of herpes simplex viruses (HSVs) plays an important role in viral entry by binding to specific cellular coreceptors and mediating viral entry to the host cells. In the present study, we isolated RNA aptamers (aptamer-1 and aptamer-5) that specifically bind to the gD protein of HSV-1 with high affinity and are able to discriminate the gD protein of a different virus, HSV-2. Aptamer-1 efficiently interfered with the interaction between the gD protein and the HSV-1 target cell receptor (HVEM) in a dose-dependent manner. The 50% effective concentration (EC(50)) of aptamer-1 was estimated to be in the nanomolar range (60 nM). Furthermore, aptamer-1 was analyzed for anti-HSV-1 activity by using plaque assays, and it efficiently inhibited viral entry with an estimated K(i) of 0.8 μM. To expand the future applications of aptamer-1, a shorter variant was designed by using both mapping and boundary analyses, resulting in the mini-1 aptamer (44-mer). Compared to the full-length aptamer, mini-1 had at least as high an affinity, specificity, and ability to interfere with gD-HVEM interactions. These studies suggest that the mini-1 aptamer could be explored further as an anti-HSV-1 topical therapy designed to prevent the risk of acquiring HSV-1 infection through physical contact.

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Year:  2012        PMID: 22514343      PMCID: PMC3393590          DOI: 10.1128/JVI.00377-12

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  34 in total

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5.  Structural basis of the highly efficient trapping of the HIV Tat protein by an RNA aptamer.

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  36 in total

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5.  Cell entry mechanisms of HSV: what we have learned in recent years.

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Journal:  Future Virol       Date:  2015-10-01       Impact factor: 1.831

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Review 7.  RNA aptamers for AMPA receptors.

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8.  In vitro selection of single-stranded DNA molecular recognition elements against S. aureus alpha toxin and sensitive detection in human serum.

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Review 9.  Antiviral strategies targeting herpesviruses.

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Review 10.  Exploiting herpes simplex virus entry for novel therapeutics.

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