| Literature DB >> 21414188 |
Robert W Li1, Congjun Li, Louis C Gasbarre.
Abstract
Cooperia oncophora is an economically important gastrointestinal nematode in ruminants. Acquired resistance to Cooperia oncophora infection in cattle develops rapidly as a result of prior infections. Naïve cattle, when given a primary infection of high-dose infective L3 larvae, develop a strong immunity to subsequent reinfection. Compared to primary infection, reinfection resulted in a marked reduction in worm establishment. In order to understand molecular mechanisms underlying the development of acquired resistance, we characterized the transcriptomic responses of the bovine small intestine to a primary infection and reinfection. A total of 23 pathways were significantly impacted during infection. The vitamin D receptor activation was strongly induced only during reinfection, suggesting that this pathway may play an important role in the development of acquired resistance via its potential roles in immune regulation and intestinal mucosal integrity maintenance. The expression of inducible nitric oxide synthase (NOS2) was strongly induced during reinfection but not during primary infection. As a result, several canonical pathways associated with NOS2 were impacted. The genes involved in eicosanoid synthesis, including prostaglandin synthase 2 (PTGS2 or COX2), remained largely unchanged during infection. The rapid development of acquired resistance may help explain the lack of relative pathogenicity by Cooperia oncophora infection in cattle. Our findings facilitate the understanding of molecular mechanisms underlying the development of acquired resistance, which could have an important implication in vaccine design.Entities:
Mesh:
Substances:
Year: 2011 PMID: 21414188 PMCID: PMC3066125 DOI: 10.1186/1297-9716-42-48
Source DB: PubMed Journal: Vet Res ISSN: 0928-4249 Impact factor: 3.683
Genes significantly induced in the bovine small intestine by Cooperia oncophora infections*.
| Bovine RefSeq_ID | Symbol | Description | Primary infection | Reinfection |
|---|---|---|---|---|
| XM_587930.4 | ABCG1 | similar to ATP-binding cassette sub-family G member 1 | 2.29* | 1.08 |
| NM_174501.2 | ALOX15 | arachidonate 15-lipoxygenase | 1.27 | 2.42* |
| NM_001083508.1 | BAALC | brain and acute leukemia, cytoplasmic | 0.51 | 2.07* |
| XM_587691.3 | BEST4 | similar to bestrophin 4 | 0.74 | 2.05* |
| XM_876130.3 | BZW1 | basic leucine zipper and W2 domains 1 | 2.78* | 1.33 |
| NM_001104961.1 | BZW2 | basic leucine zipper and W2 domains 2 | 3.89* | 0.66 |
| NM_001076195.1 | CALB1 | calbindin 1, 28 kDa | 1.15 | 2.13* |
| NM_001017934.2 | CCT3 | chaperonin containing TCP1, subunit 3 (gamma) | 2.06* | 0.52 |
| XM_869285.3 | CDH26 | similar to cadherin-like 26 | 39.48*** | 13.08* |
| XM_583707.4 | CDK8 | similar to MGC81962 protein | 2.55* | 1.26 |
| NM_176788.1 | CEBPB | CCAAT/enhancer binding protein (C/EBP), beta | 1.15 | 2.09* |
| XM_001790249.1 | CKAP5 | similar to colonic and hepatic tumor over-expressed protein | 2.20* | 0.81 |
| NM_001101980.1 | COL17A1 | collagen, type XVII, alpha 1 | 0.76 | 2.06* |
| NM_001034340.1 | CYR61 | cysteine-rich, angiogenic inducer, 61 | 0.87 | 2.62** |
| NM_001102301.1 | DDN | dendrin | 2.35* | 0.97 |
| NM_001046036.1 | DIMT1L | DIM1 dimethyladenosine transferase 1-like (S. cerevisiae) | 2.77* | 1.23 |
| NM_001010992.3 | DIO2 | deiodinase, iodothyronine, type | 4.38* | 2.41* |
| NM_001046052.1 | DYNC1LI1 | dynein, cytoplasmic 1, light intermediate chain 1 | 2.09* | 0.74 |
| NM_001143864.1 | ELP2 | elongation protein 2 homolog (S. cerevisiae) | 3.82** | 1.11 |
| NM_001102519.1 | ENDOD1 | endonuclease domain containing 1 | 1.45 | 2.49* |
| XM_614853.4 | ETV5 | similar to ets variant gene 5 (ets-related molecule) | 2.53 | 2.32* |
| NM_001008665.1 | F11 | coagulation factor XI | 1.01 | 2.01* |
| NM_174541.2 | GABRA2 | gamma-aminobutyric acid (GABA) A receptor, alpha 2 | 1.57 | 2.34** |
| NM_001075844.1 | GABRA5 | gamma-aminobutyric acid (GABA) A receptor, alpha 5 | 2.34 | 0.49** |
| NM_001038143.1 | GCLM | glutamate-cysteine ligase, modifier subunit | 1.22 | 2.50** |
| NM_205809.1 | GCNT3 | glucosaminyl (N-acetyl) transferase 3, mucin type | 7.66** | 2.47 |
| XM_868229.3 | GIF | similar to gastric intrinsic factor (vitamin B synthesis) | 0.80 | 3.69** |
| XM_865266.3 | GPR120 | similar to G protein-coupled receptor 120 | 2.02* | 1.25 |
| NM_001080354.1 | GSTM4 | glutathione S-transferase mu 4 | 2.81* | 1.61 |
| XM_605913.4 | HERC6 | similar to hect domain and RLD 6 | 0.74 | 2.62* |
| NM_001031751.1 | HGF | hepatocyte growth factor | 2.05* | 1.43 |
| NM_001105651.1 | HLA-A | major histocompatibility complex, class I, A | 2.02* | 0.43 |
| XM_001253142.1 | KSR2 | similar to Kinase suppressor of Ras 2 | 2.10 | 0.50* |
| NM_001076122.1 | HS3ST1 | heparan sulfate (glucosamine) 3-O-sulfotransferase 1 | 1.22 | 2.00** |
| NM_001040563.1 | HTATIP2 | HIV-1 Tat interactive protein 2, 30 kDa | 2.07* | 1.15 |
| NM_174644.2 | IDH3A | isocitrate dehydrogenase 3 (NAD+) alpha | 2.27* | 1.24 |
| NM_001075588.1 | IFI6 | interferon, alpha-inducible protein 6 | 0.17 | 2.55* |
| NM_001046210.1 | IL1R2 | interleukin 1 receptor, type II | 1.03 | 2.06* |
| XM_590057.4 | KIAA0415 | hypothetical protein LOC512522 | 1.30 | 2.45* |
| NM_001046411.1 | KRT7 | keratin 7 | 2.30* | 1.87 |
| XM_595458.4 | LIPM | similar to Lipase member M precursor | 1.57 | 2.21* |
| XM_001249810.2 | LONRF3 | similar to LON peptidase N-terminal domain and RING finger protein 3 | 0.97 | 2.06* |
| NM_173933.2 | LPO | lactoperoxidase | 2.33 | 0.16** |
| NM_001097565.1 | LRP8 | low density lipoprotein receptor-related protein 8 | 2.57* | 1.79 |
| XM_001789987.1 | METTL8 | methyltransferase like 8 | 0.87 | 2.20* |
| NM_173940.2 | MX1 | myxovirus (influenza virus) resistance 1 | 0.54 | 2.05* |
| XM_613028.3 | NEB | nebulin | 1.82** | 2.25* |
| NM_001076799.1 | NOS2 | nitric oxide synthase 2, inducible | 0.97 | 2.18** |
| XM_592814.2 | P2RX1 | similar to P2X purinoceptor 1 (ATP receptor) | 3.14* | 1.19 |
| NM_001001600.1 | PGA5 | pepsinogen 5, group I (pepsinogen A) | 1.21 | 2.20* |
| XM_583514.4 | PGM2 | phosphoglucomutase 2 | 2.89* | 0.70 |
| NM_001035017.1 | PHGDH | phosphoglycerate dehydrogenase | 2.62* | 1.09 |
| XM_601308.3 | POLS | similar to DNA polymerase sigma | 1.01 | 2.06** |
| NM_174432.2 | PRDX3 | peroxiredoxin 3 (PRDX3) | 2.16* | 0.51 |
| NM_174690.1 | PRSS2 | protease, serine, 2 (trypsin 2) | 3.44* | 1.13 |
| NM_001105323.1 | PTGS1 | prostaglandin-endoperoxide synthase 1 | 2.39* | 1.52 |
| NM_001103316.1 | PTPLAD1 | protein tyrosine phosphatase-like A domain containing 1 | 1.45 | 2.40* |
| NM_001046303.1 | RELL2 | RELT-like 2 | 2.07 | 0.27** |
| NM_001080232.1 | RGS13 | regulator of G-protein signaling 13 | 1.26 | 2.63* |
| NM_001045941.1 | RSAD2 | radical S-adenosyl methionine domain containing 2 | 0.40 | 3.18* |
| NM_173959.4 | SCD | stearoyl-CoA desaturase (delta-9-desaturase) | 2.21* | 0.95 |
| XM_590757.3 | SEMA3B | Sema domain, short basic domain, secreted,3B | 0.77 | 2.03* |
| NM_001099211.1 | SF3A2 | splicing factor 3a, subunit 2, 66 kDa | 1.03 | 2.12* |
| NM_001099378.1 | SLC15A1 | solute carrier family 15 (oligopeptide transporter), member 1 | 2.19* | 0.57 |
| XM_867835.3 | SLC22A15 | similar to solute carrier family 22, member 15 | 1.58 | 2.57* |
| NM_176640.2 | SLC35A2 | solute carrier family 35 (UDP-galactose transporter), member A2 | 2.07* | 1.30 |
| XM_001790621.1 | SLC38A1 | solute carrier family 38, member 1 | 2.50* | 1.70* |
| NM_001101994.1 | SLC6A12 | solute carrier family 6, member 12 | 2.08 | 0.32* |
| NM_174187.2 | SPP1 | secreted phosphoprotein 1 | 1.01 | 4.69* |
| NM_001046456.1 | TICAM2 | toll-like receptor adaptor molecule 2 | 3.29* | 1.04 |
| NM_001035107.1 | TINAG | tubulointerstitial nephritis antigen | 1.69 | 3.41* |
| NM_001076856.1 | TMEM66 | transmembrane protein 66 | 2.99* | 1.03 |
| XM_600015.4 | TNFSF9 | similar to tumor necrosis factor (ligand) superfamily, member 9 | 2.61** | 1.02 |
| NM_001038155.1 | TNS4 | tensin 4 | 2.84* | 1.88 |
| NM_001012284.1 | UBA7 | ubiquitin-like modifier activating enzyme 7 | 0.38 | 2.37* |
| NM_001103233.1 | ULBP3 | UL16 binding protein 3 | 2.23* | 0.31 |
| NM_001035075.1 | XAF1 | XIAP associated factor 1 | 0.55 | 2.20** |
| NM_001102354.1 | XRCC2 | X-ray repair complementing defective repair in Chinese hamster cells 2 | 1.40 | 2.36** |
| XM_585095.4 | ZBP1 | similar to Z-DNA binding protein 1 | 0.44 | 2.20** |
| XM_874604.3 | ZNF71 | similar to zinc finger protein 71 | 2.98* | 1.14 |
*Only sequences with annotation are listed.
Figure 1Selected pathways significantly impacted in the bovine small intestine during . The dashed line represents a significance level at P < 0.05. N = 4.
Figure 2The expression profiles of NOS2 and COX2 in the bovine small intestine during . The expression value at the mRNA level was detected using quantitative RT-PCR. The expression value of the naïve control group was set as 1.0. The fold change (N = 4) were calculated using the 2-ΔΔCT method and normalized against the naïve control group (mean ± SD). NOS 2 = nitric oxide synthase 2, inducible; COX2 = PTGS2 (prostaglandin-endoperoxide synthase 2 (prostaglandin G/H synthase and cyclooxygenase)).
Figure 3CDH26 expression in the bovine small intestine during . The expression value at the mRNA level was detected using quantitative RT-PCR. The expression value of the naïve control group was set as 1.0. The fold change (N = 4) were calculated using the 2-ΔΔCT method and normalized against the naïve control group (mean ± SD). CDH26 = cadherin 26.
Figure 4The expression of two genes in mucin biosynthesis in the bovine small intestine during . The expression value at the mRNA level was detected using quantitative RT-PCR. The expression value of the naïve control group was set as 1.0. The fold change (N = 4) were calculated using the 2-ΔΔCT method and normalized against the naïve control group (mean ± SD). MUC2 = mucin 2, oligomeric mucus/gel-forming; GCNT3 = glucosaminyl (N-acetyl) transferase 3, mucin type.
Figure 5Western blot analysis of GCNT3 and SPP1 in the small intestine tissue (jejunum) during . The relative densities of the target bands were qualified using UN-SCAN-IT from Silk Scientific. GCNT3 = glucosaminyl (N-acetyl) transferase 3, mucin type. SPP1= secreted phosphoprotein 1 (osteopontin).