4.8 Article

Entropic forces drive clustering and spatial localization of influenza A M2 during viral budding

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1805443115

Keywords

budding; membrane curvature; protein clustering; wedging mechanism; lipid-phase behavior

Funding

  1. National Institutes of Health [NIGMS-R01-GM063796]
  2. Medical Research Council [MR/L00870X/1, MR/L018578/1]
  3. European Union Seventh Framework Programme Grant [FP7-PEOPLE-2012-CIG: 333955]
  4. Carlsberg Foundation postdoctoral fellowship [CF15-0552, CF16-0639, CF17-0783]
  5. National Science Foundation [OCI-0725070, ACI-1238993]
  6. state of Illinois
  7. MRC [MR/L018578/1, MR/L00870X/1] Funding Source: UKRI
  8. Medical Research Council [MR/L018578/1] Funding Source: researchfish

Ask authors/readers for more resources

The influenza A matrix 2 (M2) transmembrane protein facilitates virion release from the infected host cell. In particular, M2 plays a role in the induction of membrane curvature and/or in the scission process whereby the envelope is cut upon virion release. Here we show using coarse-grained computer simulations that various M2 assembly geometries emerge due to an entropic driving force, resulting in compact clusters or linearly extended aggregates as a direct consequence of the lateral membrane stresses. Conditions under which these protein assemblies will cause the lipid membrane to curve are explored, and we predict that a critical cluster size is required for this to happen. We go on to demonstrate that under the stress conditions taking place in the cellular membrane as it undergoes large-scale membrane remodeling, the M2 protein will, in principle, be able to both contribute to curvature induction and sense curvature to line up in manifolds where local membrane line tension is high. M2 is found to exhibit linactant behavior in liquid-disordered liquid-ordered phase-separated lipid mixtures and to be excluded from the liquid-ordered phase, in near-quantitative agreement with experimental observations. Our findings support a role for M2 in membrane remodeling during influenza viral budding both as an inducer and a sensor of membrane curvature, and they suggest a mechanism by which localization of M2 can occur as the virion assembles and releases from the host cell, independent of how the membrane curvature is produced.

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