Literature DB >> 24704217

The structure of AAVrh32.33, a novel gene delivery vector.

Kyle Mikals1, Hyun-Joo Nam1, Kim Van Vliet1, Luk H Vandenberghe2, Lauren E Mays2, Robert McKenna1, James M Wilson2, Mavis Agbandje-McKenna3.   

Abstract

The Adeno-associated viruses (n class="Gene">AAVs) are being developed as gene delivery vectors for therapeutic clinical applications. However, the host antibody immune response directed against their capsid, prevalent in ∼40-70% of the general population, depending on serotype, negatively impacts efficacy. AAVrh32.33, a novel vector developed from rhesus macaques isolates, has significantly lower seroprevalence in human populations compared to AAV2 and AAV8, which are both in clinical use. To better understand the capsid determinants of this differential immune response to AAVrh32.33, its structure was determined by X-ray crystallography to 3.5 Å resolution. The capsid viral protein (VP) structure conserves the eight-stranded β-barrel core and αA helix reported for other parvoviruses and the distinct capsid surface topology of the AAVs: a depression at the icosahedral twofold axis, three protrusions surrounding the threefold axis, and a depression surround a cylindrical channel at the fivefold axis. A comparison to AAV2, AAV4, and AAV8, to which AAVrh32.33 shares ∼61%, ∼81%, and ∼63% identity, respectively, identified differences in previously defined AAV VP structurally variable regions (VR-1 to VR-IX) which function as receptor attachment, transduction efficiency, and/or antigenic determinants. This structure thus provides a 3D platform for capsid engineering in ongoing efforts to develop AAVrh32.33, as well as other AAV serotypes, for tissue targeted gene-therapy applications with vectors that can evade pre-existing antibody responses against the capsid. These features are required for full clinical realization of the promising AAV gene delivery system.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  AAVrh32.33; Adeno-associated virus; Gene therapy; Parvovirus; Virus capsid structure; X-ray crystallography

Mesh:

Year:  2014        PMID: 24704217      PMCID: PMC4085184          DOI: 10.1016/j.jsb.2014.03.020

Source DB:  PubMed          Journal:  J Struct Biol        ISSN: 1047-8477            Impact factor:   2.867


  56 in total

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Journal:  J Virol       Date:  2013-02-20       Impact factor: 5.103

9.  Mapping the structural determinants responsible for enhanced T cell activation to the immunogenic adeno-associated virus capsid from isolate rhesus 32.33.

Authors:  Lauren E Mays; Lili Wang; Rebeca Tenney; Peter Bell; Hyun-Joo Nam; Jianping Lin; Brittney Gurda; Kim Van Vliet; Kyle Mikals; Mavis Agbandje-McKenna; James M Wilson
Journal:  J Virol       Date:  2013-05-29       Impact factor: 5.103

10.  Adenovirus-associated virus vector-mediated gene transfer in hemophilia B.

Authors:  Amit C Nathwani; Edward G D Tuddenham; Savita Rangarajan; Cecilia Rosales; Jenny McIntosh; David C Linch; Pratima Chowdary; Anne Riddell; Arnulfo Jaquilmac Pie; Chris Harrington; James O'Beirne; Keith Smith; John Pasi; Bertil Glader; Pradip Rustagi; Catherine Y C Ng; Mark A Kay; Junfang Zhou; Yunyu Spence; Christopher L Morton; James Allay; John Coleman; Susan Sleep; John M Cunningham; Deokumar Srivastava; Etiena Basner-Tschakarjan; Federico Mingozzi; Katherine A High; John T Gray; Ulrike M Reiss; Arthur W Nienhuis; Andrew M Davidoff
Journal:  N Engl J Med       Date:  2011-12-10       Impact factor: 176.079

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  14 in total

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2.  Impact of Heparan Sulfate Binding on Transduction of Retina by Recombinant Adeno-Associated Virus Vectors.

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3.  Structure comparison of the chimeric AAV2.7m8 vector with parental AAV2.

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Review 4.  Optical stimulation for restoration of motor function after spinal cord injury.

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5.  Characterization of the Serpentine Adeno-Associated Virus (SAAV) Capsid Structure: Receptor Interactions and Antigenicity.

Authors:  Mario Mietzsch; Joshua A Hull; Victoria E Makal; Alberto Jimenez Ybargollin; Jennifer C Yu; Kedrick McKissock; Antonette Bennett; Judit Penzes; Bridget Lins-Austin; Qian Yu; Paul Chipman; Nilakshee Bhattacharya; Duncan Sousa; David Strugatsky; Peter Tijssen; Robert McKenna; Mavis Agbandje-McKenna
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6.  Structure of neurotropic adeno-associated virus AAVrh.8.

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Review 7.  Perspective on Adeno-Associated Virus Capsid Modification for Duchenne Muscular Dystrophy Gene Therapy.

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8.  Adeno-associated Virus 9 Structural Rearrangements Induced by Endosomal Trafficking pH and Glycan Attachment.

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9.  Crystal Structure of Major Envelope Protein VP24 from White Spot Syndrome Virus.

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Review 10.  Recent progress and considerations for AAV gene therapies targeting the central nervous system.

Authors:  Erik Allen Lykken; Charles Shyng; Reginald James Edwards; Alejandra Rozenberg; Steven James Gray
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