Related Experiment Video
Updated: Mar 29, 2026

Visualization of HIV-1 Gag Binding to Giant Unilamellar Vesicle GUV Membranes
Published on: July 28, 2016
Equine Infectious Anemia Virus Gag Assembly and Export Are Directed by Matrix Protein through trans-Golgi Networks
Zeli Zhang1, Jian Ma1, Xiang Zhang1
1State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, the Chinese Academy of Agriculture Sciences, Harbin, Heilongjiang, China.
Unlabelled:
Gag intracellular assembly and export are very important processes for lentiviruses replication. Previous studies have demonstrated that equine infectious anemia virus (EIAV) matrix (MA) possesses distinct phosphoinositide affinity compared with HIV-1 MA and that phosphoinositide-mediated targeting to peripheral and internal membranes is a critical factor in EIAV assembly and release. In this study, we compared the cellular assembly sites of EIAV and HIV-1. We observed that the assembly of EIAV particles occurred on interior cellular membranes, while HIV-1 was targeted to the plasma membrane (PM) for assembly. Then, we determined that W7 and K9 in the EIAV MA N terminus were essential for Gag assembly and release but did not affect the cellular distribution of Gag. The replacement of EIAV MA with HIV-1 MA directed chimeric Gag to the PM but severely impaired Gag release. MA structural analysis indicated that the EIAV and HIV-1 MAs had similar spatial structures but that helix 1 of the EIAV MA was closer to loop 2. Further investigation indicated that EIAV Gag accumulated in the trans-Golgi network (TGN) but not the early and late endosomes. The 9 N-terminal amino acids of EIAV MA harbored the signal that directed Gag to the TGN membrane system. Additionally, we demonstrated that EIAV particles were transported to the extracellular space by the cellular vesicle system. This type of EIAV export was not associated with multivesicular bodies or microtubule depolymerization but could be inhibited by the actin-depolymerizing drug cytochalasin D, suggesting that dynamic actin depolymerization may be associated with EIAV production.
Importance:
In previous studies, EIAV Gag was reported to localize to both the cell interior and the plasma membrane. Here, we demonstrate that EIAV likely uses the TGN as the assembly site in contrast to HIV-1, which is targeted to the PM for assembly. These distinct assembly features are determined by the MA domain. We also identified two sites in the N terminus of EIAV MA that were important for Gag assembly and release. Furthermore, the observation of EIAV transport by cellular vesicles but not by multivesicular bodies sheds light on the mechanisms underlying EIAV cellular replication.
Insights
Equine infectious anemia virus (EIAV) Gag assembles at the trans-Golgi network, unlike HIV-1 Gag which assembles at the plasma membrane. Specific EIAV matrix (MA) domains dictate this distinct cellular targeting and are crucial for Gag assembly and release.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Lentivirus Gag assembly and export are critical for replication.
- Equine infectious anemia virus (EIAV) matrix (MA) has unique phosphoinositide binding compared to HIV-1 MA.
- Phosphoinositide-mediated membrane targeting influences EIAV assembly and release.
Purpose of the Study:
- Compare cellular assembly sites of EIAV and HIV-1 Gag.
- Identify key determinants within EIAV MA for Gag assembly and release.
- Elucidate the mechanism of EIAV particle export.
Main Methods:
- Comparative analysis of EIAV and HIV-1 Gag cellular localization.
- Site-directed mutagenesis of EIAV MA N-terminus.
- Chimeric Gag protein construction (EIAV MA with HIV-1 MA).
- Analysis of Gag accumulation in cellular compartments (TGN, endosomes).
- Investigation of EIAV export pathways using inhibitors (cytochalasin D).
Main Results:
- EIAV Gag assembles on internal membranes, primarily the trans-Golgi network (TGN), while HIV-1 Gag targets the plasma membrane (PM).
- W7 and K9 residues in the EIAV MA N-terminus are essential for Gag assembly and release.
- Replacing EIAV MA with HIV-1 MA targets Gag to the PM but impairs release.
- The N-terminal 9 amino acids of EIAV MA contain TGN targeting signals.
- EIAV particles are exported via cellular vesicles, independent of multivesicular bodies, and sensitive to actin depolymerization.
Conclusions:
- EIAV utilizes the TGN for Gag assembly, distinct from HIV-1's PM assembly.
- The EIAV MA N-terminus dictates TGN targeting and is crucial for efficient Gag assembly and release.
- EIAV export involves a vesicle-mediated pathway dependent on dynamic actin.
More Related Videos
08:49Propagating and Detecting an Infectious Molecular Clone of Maedi-visna Virus that Expresses Green Fluorescent Protein
Published on: October 9, 2011
09:13Using Reverse Genetics to Manipulate the NSs Gene of the Rift Valley Fever Virus MP-12 Strain to Improve Vaccine Safety and Efficacy
Published on: November 1, 2011
Related Concept Videos
Coat Assembly and GTPases
Coat assembly depends on the local availability of phosphatidylinositol phosphates or PIPs and GTP-binding proteins. Adaptor proteins, which link the coat proteins to the membrane, bind to these PIPs and play a crucial role in controlling...
Nuclear Export
NES are of three types- the canonical 10-residue long leucine-rich signal and other...
Golgi Apparatus
Golgi Apparatus
The Golgi apparatus is a eukaryotic organelle that has a distinctive ribbon-like appearance. It is a primary sorting and dispatch station for cargo arriving from the ER. Newly arriving vesicles enter the cis face of the Golgi, closest to the ER, and are...
Golgi Apparatus
Golgi Matrix Proteins
One of the first identified Golgi matrix proteins was GM130, a rod-like protein located in the cis-Golgi. Subsequently, many Golgi...