2013
DOI: 10.1128/jvi.00652-13
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The Adenovirus L4-33K Protein Regulates both Late Gene Expression Patterns and Viral DNA Packaging

Abstract: The adenovirus (Ad) L4-33K protein has been linked to disparate functions during infection. L4-33K is a virus-encoded alternative RNA splicing factor which activates splicing of viral late gene transcripts that contain weak 3= splice sites. Additionally, L4-33K has been indicated to play a role in adenovirus assembly. We generated and characterized an Ad5 L4-33K mutant virus to further explore its function(s) during infection. Infectivity, viral genome replication, and most viral gene expression of the L4-33K … Show more

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Cited by 38 publications
(45 citation statements)
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“…Note that L4-22K-⌬C protein expressed in the complementing cell line ran slightly faster than WT L4-22K protein due to the C-terminal truncation. We recently showed that mutation of Ad5 L4-33K impairs the viral genome packaging process, but not virion assembly, resulting in the production of only empty capsids (37). To determine if the observed decrease in L4-33K protein levels contributed to the H166Q/H170Q mutant phenotype, we infected TetC4-33K cells with Ad5 WT, C137S/ C141S, or H166Q/H170Q viruses and analyzed virus yield (Fig.…”
Section: Resultsmentioning
confidence: 99%
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“…Note that L4-22K-⌬C protein expressed in the complementing cell line ran slightly faster than WT L4-22K protein due to the C-terminal truncation. We recently showed that mutation of Ad5 L4-33K impairs the viral genome packaging process, but not virion assembly, resulting in the production of only empty capsids (37). To determine if the observed decrease in L4-33K protein levels contributed to the H166Q/H170Q mutant phenotype, we infected TetC4-33K cells with Ad5 WT, C137S/ C141S, or H166Q/H170Q viruses and analyzed virus yield (Fig.…”
Section: Resultsmentioning
confidence: 99%
“…The L4-33K protein is an RNA splicing factor that preferentially activates L1-IIIa splicing (10). We recently showed that L4-33K is required for the accumulation of L1-IIIa and pVI, but other late mRNAs are not primary targets of L4-33K in regulating late gene expression (37). It is therefore likely that L4-33K is not the only viral factor acting as an activator of premRNA splicing and that L4-22K is a strong candidate due to shared sequences between the two proteins that may be critical for their function as mRNA splicing activators.…”
Section: Discussionmentioning
confidence: 99%
“…Both the full-length and 40-kDa bands disappear and are replaced by higher-molecular-mass species in electrophoresis performed in the absence of ␤-mercaptoethanol, suggesting the formation of disulfide-linked homodimers mediated by the only Cys residue (Cys24) in L1 52/55k (9,22). The 34-kDa band has been proposed to originate by an additional cleavage at the N terminus, because it does not react with antibodies against either residues 9 to 22 (9)(10)(11)(12)(13)(14)(15)(16)(17)(18)(19)(20)(21)(22) or 402-415 in L1 52/55k, and its electrophoretic mobility is not sensitive to nonreducing conditions, a finding consistent with the absence of Cys24 (9,22).…”
mentioning
confidence: 99%
“…Although the molecular mass of L1 52/55k calculated from its sequence is 47 kDa, the protein was named by its electrophoretic mobility; it moved as a doublet due to two different phosphorylation states (9). L1 52/55k is part of the genome packaging machinery, together with polypeptides IIIa, IVa2, L4 33k, and L4 22k (10)(11)(12)(13)(14)(15). An L1 52/55k deletion construct produces only empty capsids (10), and a thermosensitive mutation in the L1 52/55k C-terminal region (ts369; 333-EL-336 to 333-GP-336) causes partial packaging (16).…”
mentioning
confidence: 99%
“…Similarly, removal of the 87 amino acids of bovine AdV L4-33K completely blocked capsid assembly (68). It has been reported that L4-33K is a virus-encoded alternative RNA splicing factor and is also involved in viral DNA packaging (64). The presence of IVa2 protein as a hexamer-octamer complex at the unique vertex has been demonstrated and reported to be equivalent to packaging ATPase (47).…”
Section: The Packaging Motors Of Dsdna Viruses Meet the Second Intrinmentioning
confidence: 91%