AI Article Synopsis

  • Recombination significantly contributes to the genetic diversity of HIV-1, as demonstrated in the study of a unique isolate (99GR303) from a sailor possibly infected in Sierra Leone.
  • The 99GR303 isolate contains genomic elements from known subtypes A, G, J, and K, as well as an unclassified subtype, indicating a complex mosaic structure.
  • Notably, a new clade emerged from a partial env region, suggesting the potential existence of an additional subtype that may have either gone extinct or is very rare today.

Article Abstract

Recombination is one of several factors that contribute to the great genetic diversity of human immunodeficiency virus type 1 (HIV-1). In the current study, analysis of the full-length genome of a novel complex mosaic HIV-1 isolate (99GR303) from a Greek sailor who was possibly infected in Sierra Leone, Africa is presented. The 99GR303 isolate was found to comprise genomic regions belonging to subtypes A, G, J and K as well as of regions of a subtype that remains unclassified. For a partial region of env as well as vpr, no apparent similarity to the known HIV-1 subtypes or to any of the circulating recombinant forms was found. In fact, in the partial env gene, including the C2-V3 region, the 99GR303 isolate formed a new clade, suggesting the existence of an additional HIV-1 subtype. Thus, novel recombinants embody partial genomic regions which may have originated either from subtypes that existed in the past and became extinct or from contemporary subtypes that are extremely rare.

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http://dx.doi.org/10.1099/0022-1317-82-10-2509DOI Listing

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