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October 28, 2006Journal of Virology234 citationsOpen Access

Single Amino Acid Changes Can Influence Titer, Heparin Binding, and Tissue Tropism in Different Adeno-Associated Virus Serotypes

ZWZhijian WuAAAravind AsokanJGJoshua C. Grieger

Key Result

A single amino acid change (K531E in AAV6 or E531K in AAV1) determines heparin binding ability and significantly alters liver transduction efficiency in vivo.

Structured PICO

P
Population
HepG2 cells in vitro and mouse liver following portal vein administration
I
Intervention
Adeno-associated virus (AAV) vectors with single amino acid mutations (AAV6 K531E and AAV1 E531K)
C
Comparator
Wild-type AAV1 and AAV6 vectors
O
Outcome
Heparin binding ability, transgene expression, and tissue tropismsurrogate

A single lysine residue (K531) in AAV6 is critical for heparin binding and liver tropism, explaining differential phenotypes between closely related AAV serotypes.

Limitations

  • The exact alternative mechanism for AAV6 uptake mediated by lysine 531 remains unknown.

Abstract

Despite the high degree of sequence homology between adeno-associated virus (AAV) serotype 1 and 6 capsids (99.2%), these viruses have different liver transduction profiles when tested as vectors. Examination of the six amino acid residues that differ between AAV1 and AAV6 revealed that a lysine-to-glutamate change (K531E) suppresses the heparin binding ability of AAV6. In addition, the same mutation in AAV6 reduces transgene expression to levels similar to those achieved with AAV1 in HepG2 cells in vitro and in mouse liver following portal vein administration. In corollary, the converse E531K mutation in AAV1 imparts heparin binding ability and increases transduction efficiency. Extraction of vector genomes from liver tissue suggests that the lysine 531 residue assists in preferential transduction of parenchymal cells by AAV6 vectors in comparison with AAV1. Lysine 531 is unique to AAV6 among other known AAV serotypes and is located in a basic cluster near the spikes that surround the icosahedral threefold axes of the AAV capsid. Similar to studies with autonomous parvoviruses, this study describes the first example of single amino acid changes that can explain differential phenotypes such as viral titer, receptor binding, and tissue tropism exhibited by closely related AAV serotypes. In particular, a single lysine residue appears to provide the critical minimum charged surface required for interacting with heparin through electrostatic interaction and simultaneously plays an unrelated yet critical role in the liver tropism of AAV6 vectors.

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Cite This Study

Wu et al. (2006) studied Gene therapy vector tropism. AAV1 and AAV6 capsid mutants (K531E, E531K) vs. Wild-type AAV1 and AAV6 was evaluated on Liver transduction efficiency (serum hFIX levels) and heparin binding. A single amino acid change (K531E in AAV6 or E531K in AAV1) determines heparin binding ability and significantly alters liver transduction efficiency in vivo.

synapsesocial.com/papers/6a1ac8b7739ab56a9085f67ahttps://doi.org/10.1128/jvi.01288-06
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