Person: Johnson, Welkin Eric
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Publication Refinement of Primate Copy Number Variation Hotspots Identifies Candidate Genomic Regions Evolving Under Positive Selection
(BioMed Central, 2011) Babb, Paul L; Iskow, Rebecca C; Mills, Ryan E; Ionita-Laza, Iuliana; Gokcumen, Omer; Zhu, Qihui; Shi, Xinghua; Vallender, Eric; Clark, Andrew G.; Johnson, Welkin Eric; Lee, CharlesBackground: Copy number variants (CNVs), defined as losses and gains of segments of genomic DNA, are a major source of genomic variation. Results: In this study, we identified over 2,000 human CNVs that overlap with orthologous chimpanzee or orthologous macaque CNVs. Of these, 170 CNVs overlap with both chimpanzee and macaque CNVs, and these were collapsed into 34 hotspot regions of CNV formation. Many of these hotspot regions of CNV formation are functionally relevant, with a bias toward genes involved in immune function, some of which were previously shown to evolve under balancing selection in humans. The genes in these primate CNV formation hotspots have significant differential expression levels between species and show evidence for positive selection, indicating that they have evolved under species-specific, directional selection. Conclusions: These hotspots of primate CNV formation provide a novel perspective on divergence and selective pressures acting on these genomic regions.
Publication TRIM5 Suppresses Cross-Species Transmission of a Primate Immunodeficiency Virus and Selects for Emergence of Resistant Variants in the New Species
(Public Library of Science, 2010) Wu, Fan; Newman, Ruchi M.; O'Connor, Shelby; Marx, Preston A.; Goldstein, Simoy; Buckler-White, Alicia; Hirsch, Vanessa M.; Kirmaier, Andrea; Hall, Laura R; Morgan, Jennifer Sauvron; Meythaler, Mareike; Kaur, Amitinder; Johnson, Welkin EricSimian immunodeficiency viruses of sooty mangabeys (SIVsm) are the source of multiple, successful cross-species transmissions, having given rise to HIV-2 in humans, SIVmac in rhesus macaques, and SIVstm in stump-tailed macaques. Cellular assays and phylogenetic comparisons indirectly support a role for TRIM5a, the product of the TRIM5 gene, in suppressing interspecies transmission and emergence of retroviruses in nature. Here, we investigate the in vivo role of TRIM5 directly, focusing on transmission of primate immunodeficiency viruses between outbred primate hosts. Specifically, we retrospectively analyzed experimental cross-species transmission of SIVsm in two cohorts of rhesus macaques and found a significant effect of TRIM5 genotype on viral replication levels. The effect was especially pronounced in a cohort of animals infected with SIVsmE543-3, where TRIM5 genotype correlated with approximately 100-fold to 1,000-fold differences in viral replication levels. Surprisingly, transmission occurred even in individuals bearing restrictive TRIM5 genotypes, resulting in attenuation of replication rather than an outright block to infection. In cell-culture assays, the same TRIM5 alleles associated with viral suppression in vivo blocked infectivity of two SIVsm strains, but not the macaque-adapted strain SIVmac239. Adaptations appeared in the viral capsid in animals with restrictive TRIM5 genotypes, and similar adaptations coincide with emergence of SIVmac in captive macaques in the 1970s. Thus, host TRIM5 can suppress viral replication in vivo, exerting selective pressure during the initial stages of cross-species transmission.
Publication Protection Against Highly Pathogenic SIV by BCG-SIV Recombinant Priming and Attenuated Replicating Vaccinia-SIV Recombinant Boosting
(BioMed Central, 2012) Sakawaki, H; Miura, T; Igarashi, T; Horibata, S; Yokomizo, K; Matsuo, K; Yamamoto, N; Fofana, IB; Ohashi, T; Shida, H; Zhang, X; Johnson, Welkin Eric