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Additional resources for Adeno-Associated Viral Vectors for Gene Therapy
Ther. 7, 467–477. Tratschin, J. , Miller, I. L. and Carter, B. J. (1984). Genetic analysis of adeno‐associated virus: Properties of deletion mutants constructed in vitro and evidence for an adeno‐associated virus replication function. J. Virol. 51, 611–619. Tratschin, J. , West, M. , Sandbank, T. and Carter, B. J. (1984). A human parvovirus, adeno‐associated virus, as a eucaryotic vector: Transient expression and encapsidation of the procaryotic gene for chloramphenicol acetyltransferase. Mol. Cell.
J. Virol. 75, 6884–6893. Kaludov, N. et al. (2003). Production, purification and preliminary X‐ray crystallographic studies of adeno‐associated virus serotype 4. Virology 306, 1–6. Kay, M. A. et al. (2000). Evidence for gene transfer and expression of factor IX in haemophilia B patients treated with an AAV vector. Nat. Genet. 24, 257–261. King, J. , Grimm, D. and Kleinschmidt, J. A. (2001). DNA helicase‐mediated packaging of adeno‐associated virus type 2 genomes into preformed capsids. EMBO J. 20, 3282–3291.
And Chiorini, J. A. (2001). Adeno‐associated virus serotype 4 (AAV4) and AAV5 both require sialic acid binding for hemagglutination and eYcient transduction but diVer in sialic acid linkage specificity. J. Virol. 75, 6884–6893. Kaludov, N. et al. (2003). Production, purification and preliminary X‐ray crystallographic studies of adeno‐associated virus serotype 4. Virology 306, 1–6. Kay, M. A. et al. (2000). Evidence for gene transfer and expression of factor IX in haemophilia B patients treated with an AAV vector.