๐ Dissection of amino-terminal functional domains of murine coronavirus nonstructural protein 3
ยฉ 2015, American Society for Microbiology. Coronaviruses, the largest RNA viruses, have a complex program of RNA synthesis that entails genome replication and transcription of subgenomic mRNAs. RNA synthesis by the prototype coronavirus mouse hepatitis virus (MHV) is carried out by a replicase-transcriptase composed of 16 nonstructural protein (nsp) subunits. Among these, nsp3 is the largest and the first to be inserted into the endoplasmic reticulum. nsp3 comprises multiple structural domains, including two papain-like proteases (PLPs) and a highly conserved ADP-ribose-1โณ-phosphatase (ADRP) macrodomain. We have previously shown that the ubiquitin- like domain at the amino terminus of nsp3 is essential and participates in a critical interaction with the viral nucleocapsid protein early in infection. In the current study, we exploited atypical expression schemes to uncouple PLP1 from the processing of nsp1 and nsp2 in order to investigate the requirements of nsp3 domains for viral RNA synthesis. In the first strategy, a mutant was created in which replicase polyprotein translation initiated with nsp3, thereby establishing that complete elimination of nsp1 and nsp2 does not abolish MHV viability. In the second strategy, a picornavirus autoprocessing element was used to separate a truncated nsp1 from nsp3. This provided a platform for further dissection of amino-terminal domains of nsp3. From this, we found that catalytic mutation of PLP1 or complete deletion of PLP1 and the adjacent ADRP domain was tolerated by the virus. These results showed that neither the PLP1 domain nor the ADRP domain of nsp3 provides integral activities essential for coronavirus genomic or subgenomic RNA synthesis.
keywords
๐ papain-like protease (67)
๐ hepatitis virus (437)
๐ coronavirus mouse (66)
๐ endoplasmic reticulum (78)
๐ mouse hepatitis (371)
๐ nucleocapsid protein (162)
๐ highly conserved (80)
year
โฐ 2015
journal
๐ Journal of Virology
issn
๐ 10985514 0022538X
volume
89
number
11
page
6033-6047
citedbycount
12
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