๐ Intracellular targeting signals contribute to localization of coronavirus spike proteins near the virus assembly site
Coronavirus budding at the endoplasmic reticulum-Golgi intermediate compartment (ERGIC) requires accumulation of the viral envelope proteins at this point in the secretory pathway. Here we demonstrate that the spike (S) protein from the group 3 coronavirus infectious bronchitis virus (IBV) contains a canonical dilysine endoplasmic reticulum retrieval signal (-KKXX-COOH) in its cytoplasmic tail. This signal can retain a chimeric reporter protein in the ERGIC and when mutated allows transport of the full-length S protein as well as the chimera to the plasma membrane. Interestingly, the IBV S protein also contains a tyrosine-based endocytosis signal in its cytoplasmic tail, suggesting that any S protein that escapes the ERGIC will be rapidly endocytosed when it reaches the plasma membrane. We also identified a novel dibasic motif (-KXHXX-COOH) in the cytoplasmic tails of S proteins from group 1 coronaviruses and from the newly identified coronavirus implicated in severe acute respiratory syndrome. This dibasic motif also retained a reporter protein in the ERGIC, similar to the dilysine motif in IBV S. The cytoplasmic tails of S proteins from group 2 coronaviruses lack an intracellular localization signal. The inherent differences in S-protein trafficking could point to interesting variations in pathogenesis of coronaviruses, since increased levels of surface S protein could promote syncytium formation and direct cell-to-cell spread of the infection.
keywords
๐ severe acute (1373)
๐ secretory pathway (16)
๐ bronchitis virus (233)
๐ endoplasmic reticulum (78)
๐ infectious bronchitis (235)
๐ respiratory syndrome (2004)
๐ acute respiratory (1734)
๐ intermediate compartment (22)
year
โฐ 2004
journal
๐ Journal of Virology
issn
๐ 0022538X
volume
78
number
11
page
5913-5922
citedbycount
61
download
๐ [BibTeX]