| Literature DB >> 24982879 |
Zheng Sun1, Shihao Li2, Fuhua Li2, Jianhai Xiang1.
Abstract
WSSV is one of the most dangerous pathogens in shrimp aquaculture. However, the molecular mechanism of how WSSV interacts with shrimp is still not very clear. In the present study, bioinformatic approaches were used to predict interactions between proteins from WSSV and shrimp. The genome data of WSSV (NC_003225.1) and the constructed transcriptome data of F. chinensis were used to screen potentially interacting proteins by searching in protein interaction databases, including STRING, Reactome, and DIP. Forty-four pairs of proteins were suggested to have interactions between WSSV and the shrimp. Gene ontology analysis revealed that 6 pairs of these interacting proteins were classified into "extracellular region" or "receptor complex" GO-terms. KEGG pathway analysis showed that they were involved in the "ECM-receptor interaction pathway." In the 6 pairs of interacting proteins, an envelope protein called "collagen-like protein" (WSSV-CLP) encoded by an early virus gene "wsv001" in WSSV interacted with 6 deduced proteins from the shrimp, including three integrin alpha (ITGA), two integrin beta (ITGB), and one syndecan (SDC). Sequence analysis on WSSV-CLP, ITGA, ITGB, and SDC revealed that they possessed the sequence features for protein-protein interactions. This study might provide new insights into the interaction mechanisms between WSSV and shrimp.Entities:
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Year: 2014 PMID: 24982879 PMCID: PMC4055298 DOI: 10.1155/2014/416543
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
The downloaded information used for database construction in the present study.
| Database | Download address | Definition | Data type | Name used in the present study |
|---|---|---|---|---|
| Reactome |
| UniProtKB/TrEMBL | Reference sequence (Fasta) | Reactome gene database |
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| Drosophila melanogaster protein-protein interaction pairs | Interaction relation table | Reactome interaction relation table | |
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| DIP |
| fasta20120218.seq | Reference sequence (Fasta) | DIP gene database |
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| dip20120818.txt | Interaction relation table | DIP interaction relation table | |
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| STRING9.0 |
| protein.sequences.v9.0.fa.gz | Reference sequence (Fasta) | STRING gene database |
| protein.actions.v9.0.txt.gz | Interaction relation table | STRING interaction relation table | ||
Predicted interacting proteins between WSSV and the Chinese shrimp.
| WSSV_ID | Annotation | Interacting protein in FCT | Database | |||
|---|---|---|---|---|---|---|
| FCT_ID | Annotation | STRING | DIP | Reactome | ||
| wsv001 | Collagen like protein | s_18988 | Integrin alpha 4 | / | / |
|
| s_12679 | Integrin alpha 5 | |||||
| s_3390 | Integrin alpha 8 | |||||
| s_1537 | Integrin beta 1 | |||||
| s_16763 | Integrin beta 6 | |||||
| s_2496 | Syndecan | |||||
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| ||||||
| wsv026 | hypothetical protein | s_5219 | Putative methylase/helicase |
| / |
|
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| ||||||
| wsv067 | thymidylate synthetase | s_3110 | N/A |
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| s_13286 | N/A | |||||
| s_2426 | Glycine dehydrogenase | |||||
| s_5707 | Inosine triphosphatase | |||||
| s_2204 | Proliferating cell nuclear antigen | |||||
| s_3879 | Ribonucleotide reductase 1 | |||||
| s_1099 | Thymidine kinase 1 | |||||
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| ||||||
| wsv112 | dUTP diphosphatase | s_16017 | Nucleoside diphosphate kinase |
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| s_20130 | Thymidylate kinase | |||||
| s_5707 | Inosine triphosphatase | |||||
| s_60 | Nucleoside diphosphate kinase | |||||
| s_3879 | Ribonucleotide reductase 1 | |||||
| s_1099 | Thymidine kinase 1 | |||||
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| ||||||
| wsv128 | hypothetical protein | s_15702 | Beta-transducin repeat containing protein |
| / | / |
| s_3485 | Hypothetical protein | |||||
| s_5154 | Hypothetical protein | |||||
| s_6901 | Hypothetical protein | |||||
| s_13825 | Hypothetical protein | |||||
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| ||||||
| wsv172 | Ribonucleoside-diphosphate reductase large chain | s_4560 | Adenylate kinase |
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| s_6839 | Minichromosome maintenance complex component 4 | |||||
| s_60 | Nucleoside diphosphate kinase | |||||
| s_18721 | Cell division control protein 45 homolog | |||||
| s_18944 | Probable thymidylate synthase | |||||
| s_4876 | Guanylate kinase | |||||
| s_2904 | Probable uridylate kinase | |||||
| s_1744 | Ribonucleoside-diphosphate reductase small chain | |||||
| s_20130 | Thymidylate kinase | |||||
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| wsv188 | Ribonucleoside-diphosphate reductase small chain | s_5545 | Adenylate kinase 3 |
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| s_20130 | Thymidylate kinase | |||||
| s_16017 | Nucleoside diphosphate kinase | |||||
| s_2904 | Probable uridylate kinase | |||||
| s_386 | Adenylate kinase isoenzyme | |||||
| s_4876 | Guanylate kinase | |||||
| s_20711 | Conserved hypothetical protein ( | |||||
| s_60 | Nucleoside diphosphate kinase | |||||
| s_4560 | Adenylate kinase | |||||
| s_3879 | Ribonucleotide reductase 1 | |||||
Note. “/” means absence of prediction in relevant database, while “√” means presence of prediction in relevant database.
Figure 1A schematic diagram was drawn to describe the predicted protein-protein interactions between WSSV-CLP and membrane proteins from the shrimp and the intracellular signaling pathways induced by the interactions. The diagram was drawn based on the KEGG pathway map04510 (focal adhesion) and map04512 (ECM-receptor interaction). WSSV-CLP: WSSV collagen like protein; ITGA: integrin alpha; ITGB: integrin beta; SDC: syndecan; CCL5: chemokine ligand 5; PKC: protein kinase C; FAK: focal adhesion kinase; PI3K: phosphoinositide 3-kinase; FGF2: fibroblast growth factor 2; MMP7: matrix metalloproteinase-7.
Endogenous proteins interacting with WSSV-CLP, ITGA, ITGB, and SDC.
| Predicted gene ID | Predicted gene annotation | Gene ID of endogenous interacting proteins | Annotation of endogenous interacting proteins |
|---|---|---|---|
| s_12679 | Integrin alpha 5 | s_17653 | fms-related tyrosine kinase 4 |
| s_25665 | Fibronectin 1 | ||
| s_1537 | Integrin beta 1 | ||
| s_1294 | Talin 1 | ||
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| |||
| s_18988 | Integrin alpha 4 | s_21444 | Insulin-like receptor |
| s_1537 | Integrin beta 1 | ||
| s_5849 | Integrin alpha 1 | ||
| s_2170 | Myospheroid | ||
| s_22423 | Ultraspiracle | ||
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| |||
| s_3390 | Integrin alpha 8 | s_30884 | Ecdysone receptor |
| s_21444 | Insulin-like receptor | ||
| s_1537 | Integrin beta 1 | ||
| s_5849 | Integrin alpha 1 | ||
| s_2170 | Myospheroid | ||
|
| |||
| s_16763 | Integrin beta 6 | s_23243 | Fibronectin 1 |
| s_5849 | Integrin alpha 1 | ||
| s_6902 | Integrin alpha 4 | ||
| s_26063 | Integrin alpha 5 | ||
|
| |||
| s_1537 | Integrin beta 1 | s_8242 | Integrin-linked kinase |
| s_5849 | Integrin alpha 1 | ||
| s_7013 | Lysosomal-associated membrane protein 1 | ||
| s_11802 | Lysosomal-associated membrane protein 2 | ||
| s_26063 | Integrin alpha 5 | ||
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| |||
| s_2496 | Syndecan | s_24189 | CG3194 |
| s_3573 | CG9298 | ||
| s_18063 | Calcium/calmodulin-dependent protein kinase | ||
| s_18648 | Dally-like | ||
| s_7954 | Kon-tiki | ||
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| |||
| wsv001 | Collagen triple helix repeat protein | wsv188 | Ribonucleotide reductase small subunit |
| wsv172 | Ribonucleotide reductase large subunit RR1 | ||
Figure 2Schematic description of domains in ITGA (a) and ITGB (b). The FG-GAP domain, integrin alpha 2 domain, integrin beta domain, βA domain, EuK2 domain, tail (integrin beta tail) domain, and cyt (integrin beta cytoplasmic) domain located in ITGA and ITGB were shown with their beginning residue sites and stopping residue sites. The detailed sequence information of FG-GAP domain in ITGA_4, ITGA_5, and ITGA_8 were listed and aligned. The common feature of βA domain in ITGB_1 integrin beta domain was shown in a green box.
Figure 3A compared schematic structure of syndecan from shrimp (FcSDC) and syndecan-1 (accession number: NP_001006947) from Homo sapiens (HsSDC1). The signal peptide (SP), syndecan conserved domains (transmembrane domain, C1 domain and C2 domain), and syndecan-type specific domains (ectodomain and V domain) were displayed with the number of their boundary amino acid residues. The potent glycosylation sites, including SG sites and predicted O-linked glycosylation sites, were shown. The sequence information of C1 domain and C2 domain was also listed.