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February 1, 1989Journal of Virology262 citationsOpen Access

Redundant control of adenovirus late gene expression by early region 4

EBEileen BridgeGKGary Ketner

Structured PICO

P
Population
Cells infected by human adenovirus type 5 derivatives carrying deletion mutations in early region 4 (E4)
I
Intervention
Deletion mutations in E4 (specifically lacking both ORF 3 and ORF 6)
C
Comparator
Wild-type virus or mutants expressing either ORF 3 or ORF 6
O
Outcome
Viral late protein synthesis, viral cytoplasmic late message accumulation, viral DNA accumulation, and plaquing abilitysurrogate

The products of adenovirus E4 ORFs 3 and 6 are redundant and individually sufficient to satisfy the requirement for E4 in late gene expression.

Abstract

A series of human adenovirus type 5 derivatives carrying deletion mutations in early region 4 (E4) were constructed and characterized with respect to viral late protein synthesis, viral cytoplasmic late message accumulation, viral DNA accumulation, and plaquing ability. Viral late protein synthesis was essentially normal in cells infected by mutants expected to produce either the E4 open reading frame (ORF) 3 product or the E4 ORF 6 product. In cells infected by mutants lacking both ORF 3 and ORF 6, late protein synthesis was dramatically reduced. The basis for this reduction appears to be a concomitant reduction in cytoplasmic late message levels. Our results suggest that the products of ORFs 3 and 6 are redundant, since they are individually able to satisfy the requirement for E4 in late gene expression. Two of the mutants examined were defective for viral late protein synthesis but showed no measurable defect in viral DNA accumulation. The defect in late gene expression is not, therefore, a reflection of a primary defect in viral DNA synthesis. Finally, mutants expected to express ORF 3 or ORF 6 formed plaques with normal or only modestly reduced efficiency, whereas mutants expected to express neither ORF formed plaques with an efficiency less than 10(-6) that of wild-type virus. Thus, plaque-forming ability reflected late protein synthetic ability, suggesting that among these mutants late protein synthetic proficiency is the principle determinant of plaquing efficiency.

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Cite This Study

Bridge et al. (1989) studied this question.

synapsesocial.com/papers/69d9f49a8988aeabbe68649ehttps://doi.org/10.1128/jvi.63.2.631-638.1989
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