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Sendai virus assembly: M protein binds to viral glycoproteins in transit through the secretory pathway
C M Sanderson1, N L McQueen, D P Nayak
1Department of Microbiology and Immunology, Jonsson Comprehensive Cancer Center, UCLA School of Medicine 90024-1747.
Abstract:
We have examined the relative ability of Sendai virus M (matrix) protein to associate with membranes containing viral glycoproteins at three distinct stages of the exocytic pathway prior to cell surface appearance. By the use of selective low-temperature incubations or the ionophore monensin, the transport of newly synthesized viral glycoproteins was restricted to either the pre-Golgi intermediate compartment (by incubation at 15 degrees C), the medial Golgi (in the presence of monensin), or the trans-Golgi network (by incubation at 20 degrees C). All three of these treatments resulted in a marked accumulation of the M protein on perinuclear Golgi-like membranes which in each case directly reflected the distribution of the viral F protein. Subsequent redistribution of the F protein to the plasma membrane by removal of the low-temperature (20 degrees C) block resulted in a concomitant redistribution of the M protein, thus implying association of the two components during intracellular transit. The extent of M protein-glycoprotein association was further examined by cell fractionation studies performed under each of the three restrictive conditions. Following equilibrium sedimentation of membranes derived from monensin-treated cells, approximately 40% of the recovered M protein was found to cofractionate with membranes containing the viral glycoproteins. Also, by flotation analyses, a comparable subpopulation of M protein was found to be membrane associated whether viral glycoproteins were restricted to the trans-Golgi network, the medial Golgi, or the pre-Golgi intermediate compartment. Additionally, transient expression of M protein alone from cloned cDNA showed that neither membrane association nor Golgi localization occurs in the absence of Sendai virus glycoproteins.
Insights
Sendai virus M protein associates with viral glycoproteins within the Golgi apparatus during intracellular transport. This association is crucial for M protein localization and membrane binding, independent of other viral components.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- The Sendai virus matrix (M) protein plays a role in viral assembly and budding.
- Understanding M protein's interaction with viral glycoproteins is key to elucidating virus assembly mechanisms.
Purpose of the Study:
- To investigate the association of Sendai virus M protein with viral glycoproteins at different stages of the exocytic pathway.
- To determine the role of viral glycoproteins in M protein membrane association and Golgi localization.
Main Methods:
- Utilized low-temperature incubations (15°C, 20°C) and monensin treatment to block glycoprotein transport at specific Golgi compartments.
- Employed cell fractionation, equilibrium sedimentation, and flotation analyses to assess M protein-glycoprotein association.
- Performed transient expression of M protein alone to evaluate its localization in the absence of viral glycoproteins.
Main Results:
- Sendai virus M protein accumulated on Golgi-like membranes colocalizing with viral F protein under all restrictive conditions.
- M protein redistribution mirrored F protein redistribution to the plasma membrane, indicating co-transport.
- Cell fractionation showed approximately 40% of M protein cofractionated with glycoprotein-containing membranes.
- M protein membrane association and Golgi localization were dependent on the presence of viral glycoproteins.
Conclusions:
- Sendai virus M protein associates with viral glycoproteins during intracellular transit through the Golgi.
- Viral glycoproteins are essential for the membrane association and Golgi localization of the M protein.
- These findings highlight a critical interplay between M protein and glycoproteins for Sendai virus assembly.