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PMID: 19393081 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Exploring the functional interaction between POSH and ALIX and the relevance to HIV-1 release.

BMC biochemistry ·Vol. 10 ·2009-04-24 ·Pages 12

Votteler J, Iavnilovitch E, Fingrut O, Shemesh V, Taglicht D, Erez O, Sörgel S, Walther T, Bannert N, Schubert U, Reiss Y

Abstract

The ALG2-interacting protein X (ALIX)/AIP1 is an adaptor protein with multiple functions in intracellular protein trafficking that plays a central role in the biogenesis of enveloped viruses. The ubiquitin E3-ligase POSH (plenty of SH3) augments HIV-1 egress by facilitating the transport of Gag to the cell membrane. Recently, it was reported, that POSH interacts with ALIX and thereby enhances ALIX mediated phenotypes in Drosophila. In this study we identified ALIX as a POSH ubiquitination substrate in human cells: POSH induces the ubiquitination of ALIX that is modified on several lysine residues in vivo and in vitro. This ubiquitination does not destabilize ALIX, suggesting a regulatory function. As it is well established that ALIX rescues virus release of L-domain mutant HIV-1, HIV-1DeltaPTAP, we demonstrated that wild type POSH, but not an ubiquitination inactive RING finger mutant (POSHV14A), substantially enhances ALIX-mediated release of infectious virions derived from HIV-1DeltaPTAP L-domain mutant (YPXnL-dependent HIV-1). In further agreement with the idea of a cooperative function of POSH and ALIX, mutating the YPXnL-ALIX binding site in Gag completely abrogated augmentation of virus release by overexpression of POSH. However, the effect of the POSH-mediated ubiquitination appears to be auxiliary, but not necessary, as silencing of POSH by RNAi does not disturb ALIX-augmentation of virus release. Thus, the cumulative results identified ALIX as an ubiquitination substrate of POSH and indicate that POSH and ALIX cooperate to facilitate efficient virus release. However, while ALIX is obligatory for the release of YPXnL-dependent HIV-1, POSH, albeit rate-limiting, may be functionally interchangeable.

MeSH Terms
Binding Sites/genetics Blotting, Western Calcium-Binding Proteins/genetics,metabolism Cell Cycle Proteins/genetics,metabolism Cell Line Endosomal Sorting Complexes Required for Transport HIV-1/genetics,physiology HeLa Cells Humans Immunoprecipitation Mutation Protein Binding Recombinant Proteins/metabolism Substrate Specificity Transfection Ubiquitin-Protein Ligases/genetics,metabolism Ubiquitination Virus Assembly Virus Replication
Chemicals
Calcium-Binding Proteins Cell Cycle Proteins Endosomal Sorting Complexes Required for Transport PDCD6IP protein, human Recombinant Proteins SH3RF1 protein, human Ubiquitin-Protein Ligases
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Votteler Jörg
Institute of Virology, Friedrich-Alexander University, Erlangen, Germany. Joerg.Votteler@viro.med.uni-erlangen
Iavnilovitch Elena
Fingrut Orit
Shemesh Vivian
Taglicht Daniel
Erez Omri
Sörgel Stefan
Walther Torsten
Bannert Norbert
Schubert Ulrich
Reiss Yuval
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Article Info
Journal
BMC biochemistry
Abbr.
BMC Biochem
ISSN
1471-2091
Published
2009-04-24
Epub
2009-00-24
Pages
12
Language
English
Region
England
NLM ID
101084098
PMCID
PMC2680910
Subset
IM
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