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Biology subjects

Langley, C. A.

Publications and source records attributed to Langley, C. A..

2 recordsLinked to original sources

Fitness Landscapes of APOBEC3G Antagonism by HIV-1 Vif proteins

Host immune factors shape viral evolution. The HIV-1 Vif protein counteracts host APOBEC3G (A3G) to ensure productive infection. Using deep mutational scanning (DMS) across two divergent HIV-1 Vif proteins, we systematically mapped and compared the mutational landscapes governing Vif antagonism of A3G. These high-resolution fitness maps reveal core principles of host-virus coevolution. Most missense mutations were strongly deleterious, reflecting pervasive purifying selection. Yet several highly conserved Vif residues at binding interfaces with A3G, RNA, and CBF{beta} exhibited unexpected mutational tolerance, indicating structural flexibility at these sites. Comparative analysis revealed that strain-specific epistasis dictates Vif-A3G interactions, including adaptive changes at the Vif-A3G interface. Further analysis uncovered striking temporal epistasis, whereby initially adaptive Vif mutations critical for antagonizing hominoid A3G subsequently exhibited reduced fitness. Thus, structural robustness permits adaptation, while epistasis imposes constraints on Vifs ability to maintain A3G antagonism while remaining responsive to new evolutionary pressures. TeaserMapping how HIV-1 evolves to outsmart a key human antiviral protein reveals both unexpected flexibility and evolutionary constraints in viral adaptation.

microbiology↗

Antiviral Mx proteins have an ancient origin and widespread distribution among eukaryotes

First identified in mammals, Mx proteins are potent antivirals against a broad swathe of viruses. Mx proteins arose within the Dynamin superfamily of proteins (DSP), mediating critical cellular processes, such as endocytosis and mitochondrial, plastid, and peroxisomal dynamics. And yet, the evolutionary origins of Mx proteins are poorly understood. Using a series of phylogenomic analyses with stepwise increments in taxonomic coverage, we show that Mx proteins predate the interferon signaling system in vertebrates. Our analyses find an ancient monophyletic DSP lineage in eukaryotes that groups vertebrate and invertebrate Mx proteins with previously undescribed fungal MxF proteins, the relatively uncharacterized plant and algal Dynamin 4A/4C proteins, and representatives from several early-branching eukaryotic lineages. Thus, Mx-like proteins date back close to the origin of Eukarya. Our phylogenetic analyses also reveal that host-encoded and NCLDV (nucleocytoplasmic large DNA viruses)-encoded DSPs are interspersed in four distinct DSP lineages, indicating recurrent viral theft of host DSPs. Our analyses thus reveal an ancient history of viral and antiviral functions encoded by the Dynamin superfamily in eukaryotes.

evolutionary biology↗