| Literature DB >> 26779163 |
Cheng-Cheng Lee1, Tzu-Ling Lin2, Jhe-Wei Lin1, Yu-Tsung Han1, Yu-Ting Huang1, Yau-Heiu Hsu1, Menghsiao Meng1.
Abstract
Bamboo mosaic virus (BaMV) has a 6.4-kb (+) sense RNA genome with a 5' cap and a 3' poly(A) tail. ORF1 of this potexvirus encodes a 155-kDa replication protein responsible for the viral RNA replication/transcription and 5' cap formation. To learn more about the replication complex of BaMV, a protein preparation enriched in the 155-kDa replication protein was obtained from Nicotiana benthamiana by a protocol involving agroinfiltration and immunoprecipitation. Subsequent analysis by SDS-PAGE and mass spectrometry identified a handful of host proteins that may participate in the viral replication. Among them, the cytoplasmic exoribonuclease NbXRN4 particularly caught our attention. NbXRN4 has been shown to have an antiviral activity against Tomato bushy stunt virus and Tomato mosaic virus. In Arabidopsis, the enzyme could reduce RNAi- and miRNA-mediated RNA decay. This study found that downregulation of NbXRN4 greatly decreased BaMV accumulation, while overexpression of NbXRN4 resulted in an opposite effect. Mutations at the catalytically essential residues abolished the function of NbXRN4 in the increase of BaMV accumulation. Nonetheless, NbXRN4 was still able to promote BaMV accumulation in the presence of the RNA silencing suppressor P19. In summary, the replication efficiency of BaMV may be improved by the exoribonuclease activity of NbXRN4.Entities:
Keywords: Bamboo mosaic virus; RNA replication; XRN4; exonuclease; host factors; potexvirus; replicase; replication protein
Year: 2016 PMID: 26779163 PMCID: PMC4702010 DOI: 10.3389/fmicb.2015.01508
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Plant proteins differentially present in the BaMV replication protein-enriched fraction.
| GI number1 | Protein | Mascot score |
|---|---|---|
| gi| 359490274 | DEAD-box ATP dependent RNA helicase 7-like | 72 |
| gi| 357113938 | ATP-dependent DNA helicase Q-like 2-like | 69 |
| gi| 3776009 | RNA helicase | 67 |
| gi| 242037819 | Exoribonuclease (XRN4) | 43 |
| gi| 356540231 | MAP kinase phosphatase-like protein | 20 |
| gi| 255563929 | Disease resistance protein RGA2 | 49 |
| gi| 359754963 | Ripening-related protein | 97 |
| gi| 20522008 | Pleiotropic drug resistance like protein | 89 |
| gi| 30694805 | Scarecrow-like protein 5 | 83 |
| gi| 7576225 | ClpA regulatory subunit of Clp protease complex | 72 |
| gi| 6715512 | Vacuolar H+-ATPase B subunit | 89 |
| gi| 7573308 | NADP+-dependent isocitrate dehydrogenase | 72 |
| gi| 193290730 | S-adenosylmethionine synthetase | 43 |
| gi| 28268680 | Respiratory burst oxidase homolog | 69 |
Sequence number of the EST in Nicotiana benthamiana corresponding to the targeted proteins and the primers used in the construction of TRV2 derivatives.
| Targeted protein | EST ID1 | Primers for pTRV2-based construct (5′→3′)2 | PCR product (bp) |
|---|---|---|---|
| DEAD-box ATP dependent RNA helicase 7-like | CN748199 | FP: TTCCG | 319 |
| GO608259 | FP: TTCCG | 419 | |
| ATP-dependent DNA helicase Q-like 2-like | GO601475 | FP: TTCCG | 459 |
| CK283590 | FP: TTCCG | 403 | |
| RNA helicase | CK286108 | FP: TTCCG | 354 |
| CK282547 | FP: TTCCG | 317 | |
| Exoribonuclease (XRN4) | EH369301 | FP: TTCCG | 311 |
| MAP kinase phosphatase-like protein | GO612773 | FP: TTCCG | 212 |
| Disease resistance protein RGA2 | CK290351 | FP: TTCCG | 467 |
| Ripening-related protein | ES886818 | FP: TTCCG | 410 |
| Pleiotropic drug resistance like protein | CK291986 | FP: TTCCG | 404 |
| Scarecrow-like protein 5 | CN744167 | FP: TTCCG | 416 |
| ClpA regulatory subunit of Clp protease complex | GO604713 | FP: TTCCG | 411 |
| vacuolar H+-ATPase B subunit | GO601484 | FP: TTCCG | 493 |
| NADP+-dependent isocitrate dehydrogenase | EX534040 | FP: TTCCG | 407 |
| S-adenosylmethionine synthetase | CK290599 | FP: TTCCG | 380 |
| Respiratory burst oxidase homolog | CK292677 | FP: TTCCG | 330 |