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Internal entry of ribosomes on a tricistronic mRNA encoded by infectious bronchitis virus
1Department of Pathology, University of Cambridge, United Kingdom.
Abstract:
mRNA3 specified by the coronavirus infectious bronchitis virus appears to be functionally tricistronic, having the capacity to encode three small proteins (3a, 3b, and 3c) from separate open reading frames (ORFs). The mechanism by which this can occur was investigated through in vitro translation studies using synthetic mRNAs containing the 3a, 3b, and 3c ORFs, and the results suggest that translation of the most distal of the three ORFs, that for 3c, is mediated by an unconventional, cap-independent mechanism involving internal initiation. This conclusion is based on several observations. A synthetic mRNA whose peculiar 5' end structure prevents translation of the 5'-proximal ORFs (3a and 3b) directs the synthesis of 3c normally. Translation of 3c, unlike that of 3a and 3b, was insensitive to the presence of the 5' cap analog 7-methyl-GTP, and it was unaffected by alteration of the sequence contexts for initiation on the 3a and 3b ORFs. Finally, an mRNA in which the 3a/b/c infectious bronchitis virus coding region was placed downstream of the influenza A virus nucleocapsid protein gene directed the efficient synthesis of 3c as well as nucleocapsid protein, whereas initiation at 3a and 3b could not be detected. Expression of the 3c ORF from this mRNA, however, was abolished when the 3a and 3b coding region was deleted, indicating that 3c initiation is dependent on upstream sequence elements which together may serve as a ribosomal internal entry site similar to those described for picornaviruses.
Insights
The coronavirus infectious bronchitis virus mRNA3 uses an unconventional internal initiation mechanism for translating the 3c protein. This cap-independent pathway allows for efficient expression of distal open reading frames.
Area of Science:
- Molecular Biology
- Virology
- Genetics
Background:
- Coronavirus infectious bronchitis virus (IBV) mRNA3 is thought to be tricistronic, encoding three proteins (3a, 3b, 3c).
- Understanding the translation mechanism of polycistronic viral mRNAs is crucial for comprehending viral replication strategies.
Purpose of the Study:
- To investigate the mechanism of translation for the three open reading frames (ORFs) within IBV mRNA3.
- To determine how the distal 3c ORF is expressed from this tricistronic mRNA.
Main Methods:
- In vitro translation assays using synthetic mRNAs encoding IBV 3a, 3b, and 3c ORFs.
- Utilized 5' cap analog (7-methyl-GTP) to assess cap-dependent translation.
- Constructed chimeric mRNAs with IBV coding regions and influenza A virus nucleocapsid protein gene.
Main Results:
- Translation of the 3c ORF occurred independently of the 5' cap structure, suggesting cap-independent initiation.
- The 3c ORF was efficiently synthesized even when 5'-proximal ORFs (3a and 3b) were untranslatable.
- Deletion of upstream sequences (3a and 3b ORFs) abolished 3c expression, indicating dependence on upstream elements for internal initiation.
Conclusions:
- IBV mRNA3 translation of the 3c protein utilizes an unconventional, cap-independent internal initiation mechanism.
- Upstream sequence elements within the 3a/b coding region likely function as a ribosomal internal entry site, similar to picornaviruses.
- This mechanism facilitates the expression of distal ORFs in tricistronic viral mRNAs.
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