| Literature DB >> 25433481 |
Yeoung-Gyu Ko1, Seongsoo Hwang, Sung Woo Kim, Hyun Kim, Hwan Hoo Seong, Jae-Hwan Kim, Yuno Song, Bo-Suck Yang, Young Min Song, Jae-Hyeon Cho.
Abstract
BACKGROUND: Somatic cell cloning by nuclear transfer (SCNT) in pig is clearly of great benefit for basic research and biomedical applications. Even though cloned offspring have been successfully produced in pig, SCNT is struggling with the low efficiency.Entities:
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Year: 2014 PMID: 25433481 PMCID: PMC4289280 DOI: 10.1186/1756-0500-7-861
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
Fetal body weight and the number of fetuses recovered at day 35 of pregnancy
| Animal group | Recipients | Pregnancy (%) | No. fetuses recovered | Body weight (g) | |
|---|---|---|---|---|---|
| Normal | Abnormal | ||||
| Control | 10 | 100 | 11.33 ± 1.33 | 1 ± 0 | 3.34 ± 0.26 |
| SCNT | 18 | 44.4 | 4.67 ± 2.33 | 2.33 ± 0.33 | 2.71 ± 0.4 |
Control, natural mating; SCNT, SCNT fetus. The number mean of normally recovered fetuses from the one SCNT-recipient gilt was 4.67 ± 2.33. The ratios of control fetal weight were significantly higher than those of the SCNT fetus. Data were expressed as mean ± SD.
Figure 1Morphology of fetus and extraembryonic tissues in the control and SCNT-derived fetus from 35 day of pregnancy. (A) Control fetus and extraembryonic tissue from 35 day of pregnancy. (B) The SCNT fetus and extraembryonic tissue from 35 day of pregnancy. a and a’, embryo; b and b’, amnionic sac; c and c’ extraembryonic tissue. The weight of fetus was measured after removal of all extraembryonic tissues including chorioallantois, amniotic and allantoic fluid, and umbilical cord. Bar, 10 mm.
Figure 2Two-dimensional protein separation of the control and SCNT extraembyonic tissue as visualized by the silver staining. Proteins were isolated from the control and SCNT extraembryonic tissue, and 1000 μg of total protein were loaded to the 2-D gel. The first dimension was 24-cm pH 4–10 nonlinear IPG, and the second dimension was 10 ~ 16% gradient gels (Control I and II, control extraembryonic tissues; SCNT I and II, SCNT extraembryonic tissues).
Up-regulated proteins in the SCNT extraembryonic tissue
| Spot no. | Protein name | NCBI accession no. | Species | PMF (MS) | Experimental | Ideal | ||||
|---|---|---|---|---|---|---|---|---|---|---|
| Matched peptides | Measured peptides | Sequence coverage (%) | Molecular mass (kDa) | pI | Molecular mass (kDa) | pI | ||||
| 2401 | peroxisome proliferative activated receptor gamma | AAN15206.1 | Ovis aries | 8 | 16 | 23 | 54.95 | 6.2 | 46.63 | 4.60 |
| 5110 | heat shock 27 kDa protein 1 | NP_001007519.1 | Sus scrofa | 11 | 13 | 43 | 22.98 | 6.2 | 28.02 | 5.80 |
| 5118 | Elongation factor 1-gamma (EF-1-gamma) (eEF-1B gamma) | spQ29387 | Sus scrofa | 7 | 8 | 18 | 49.95 | 6.2 | 13.90 | 5.72 |
After protein identification with mass spectrophotometry and protein database search, 3 proteins were up-regulated (2.0-to 4.5-fold increases) in the SCNT extraembryonic tissue.
Down-regulated proteins in the SCNT extraembryonic tissue
| Spot no. | Protein name | NCBI accession no. | Species | PMF (MS) | Experimental | Ideal | ||||
|---|---|---|---|---|---|---|---|---|---|---|
| Matched peptides | Measured peptides | Sequence coverage (%) | Molecular mass (kDa) | pI | Molecular mass (kDa) | pI | ||||
| 2106 | apolipoprotein A-I | AAA30992.1 | Sus scrofa | 24 | 24 | 61 | 30.31 | 5.4 | 26.42 | 4.67 |
| 1203 | translational elongation factor 1 delta | NP_001009449.1 | Ovis aries | 9 | 9 | 27 | 30.97 | 5.4 | 38.83 | 4.43 |
| 1204 | calpain, small subunit 1 | NP_999483.1 | Sus scrofa | 8 | 14 | 21 | 28.16 | 5.0 | 29.96 | 4.45 |
| 1312 | thioredoxin-like 1 | NP_004777.1 | Homo sapiens | 13 | 14 | 48 | 32.63 | 4.8 | 39.48 | 4.57 |
| 1409 | cytokeratin 19 | NP_001015600.1 | Bos taurus | 14 | 24 | 33 | 43.87 | 4.9 | 47.00 | 4.52 |
| 1511 | beta 5-tubulin | BAD08435.1 | Sus scrofa | 28 | 28 | 43 | 50.11 | 4.8 | 63.04 | 4.47 |
| 1601 | gamma-aminobutyric acid (GABA) A receptor, alpha 2 | 1411303A | Bos taurus | 10 | 13 | 23 | 51.46 | 9.3 | 67.05 | 4.32 |
| 1808 | 90-kDa heat shock protein alpha | NP_999138.1 | Sus scrofa | 26 | 28 | 38 | 85.11 | 4.9 | 112.70 | 4.53 |
| 1811 | heat shock protein 90 beta | BAB20776.1 | Equus caballus | 28 | 42 | 35 | 82.29 | 5.0 | 112.11 | 4.58 |
| 2107 | eukaryotic translation initiation factor 5A | NP_001003658.1 | Bos taurus | 8 | 12 | 42 | 17.04 | 5.1 | 13.78 | 4.69 |
| 2108 | Peroxiredoxin-2 (Thioredoxin peroxidase 1) (Thioredoxin-dependent peroxide reductase 1) (Thiol-specific antioxidant protein) (TSA) | spP52552 | Sus scrofa | 6 | 6 | 34 | 13.82 | 4.7 | 23.67 | 4.72 |
| 2201 | epsilon1-COP | BAA94967.1 | Bos taurus | 14 | 17 | 32 | 34.69 | 5.0 | 36.64 | 4.60 |
| 2203 | cytochrome b | AAR10359.1 | Phoca caspica | 5 | 9 | 15 | 40.42 | 6.6 | 31.74 | 4.65 |
| 2204 | Rho GDP dissociation inhibitor (GDI) beta | NP_786991.1 | Bos taurus | 5 | 6 | 30 | 22.83 | 5.1 | 29.40 | 4.67 |
| 2205 | carbonic anhydrase III | NP_001008688.1 | Sus scrofa | 12 | 23 | 56 | 29.68 | 7.9 | 31.26 | 4.69 |
| 2206 | pro alpha 1(I) collagen | CAC38832.1 | Bos taurus | 7 | 11 | 20 | 32.14 | 5.5 | 38.27 | 4.70 |
| 2301 | tropomodulin 3 (ubiquitous) | NP_999459.1 | Sus scrofa | 13 | 15 | 41 | 39.74 | 5.0 | 45.66 | 4.67 |
| 2305 | apolipoprotein E precursor | NP_999473.1 | Sus scrofa | 15 | 19 | 26 | 36.64 | 5.6 | 39.77 | 4.85 |
| 2610 | Vimentin | spP02543 | Sus scrofa | 13 | 21 | 59 | 31.03 | 6.5 | 64.64 | 4.74 |
| 2611 | Tubulin alpha-1A chain (Tubulin alpha-1 chain) (Alpha-tubulin 1) | spP02550 | Sus scrofa | 16 | 25 | 43 | 50.80 | 4.9 | 67.27 | 4.75 |
| 2709 | 6A3-5 protein | AAT75226.1 | Sus scrofa | 13 | 17 | 6 | 188.33 | 6.1 | 86.97 | 4.83 |
| 2815 | valosin-containing protein | NP_999445.1 | Sus scrofa | 19 | 22 | 23 | 89.96 | 5.1 | 119.25 | 4.89 |
| 3206 | apolipoprotein E precursor | NP_999473.1 | Sus scrofa | 23 | 25 | 44 | 36.64 | 5.6 | 38.43 | 5.00 |
| 3412 | Eukaryotic initiation factor 4A-I (ATP-dependent RNA helicase eIF4A-1) (eIF4A-I) (eIF-4A-I) | spP29562 | Oryctolagus cuniculus | 29 | 31 | 59 | 45.50 | 5.3 | 50.39 | 5.11 |
| 3703 | Structural maintenance of chromosomes protein 2 (Chromosome-associated protein E) (XCAP-E homolog) (FGF-inducible protein 16) | spQ8CG48 | Mus musculus | 13 | 14 | 15 | 134.77 | 8.7 | 98.12 | 4.94 |
| 3801 | transglutaminase 2 | NP_803473.1 | Bos taurus | 10 | 17 | 20 | 78.29 | 5.1 | 103.17 | 4.93 |
| 3805 | valosin-containing protein | 1303334A | Sus scrofa | 34 | 38 | 43 | 89.97 | 5.1 | 118.87 | 4.95 |
| 5105 | retinol-binding protein 4, plasma | spP27485 | Sus scrofa | 12 | 12 | 60 | 23.39 | 5.4 | 23.05 | 5.61 |
| 5117 | stathmin-1 | NP_001009582.1 | Sus scrofa | 5 | 5 | 29 | 17.28 | 5.8 | 13.97 | 5.52 |
| 6701 | albumin | CAA30970.1 | Sus scrofa | 24 | 25 | 41 | 71.39 | 5.9 | 82.15 | 6.12 |
The 30 differentially down-regulated proteins (2.0-to 5.5-fold decreases) were identified according to protein identification with mass spectrophotometry and protein database search.
Figure 3Immunohistochemical analysis of antioxidant proteins in the control and SCNT extraembryonic tissue. (A) Catalase expression in the control extraembryonic tissue was mainly localized on the luminal epithelium (LE) and endometrial glandular (EG) cells. Magnification: control and SCNT extraembryonic tissue (x200). Scale bars represent 100 μm. (B) Immunohistochemical analysis of GPX in the control and SCNT extraembryonic tissue. GPX was strongly expressed in the luminal epithelium (LE) of the control extraembryonic tissue. The insect in (a, x200) and (c, x200) showed (b, x400) and (d, x400), respectively. Scale bars represent 100 μm. (C) Western blot analysis of antioxidant enzyme proteins in the control and SCNT extraembryonic tissue. The expression of GPX and Catalase was down-regulated in the SCNT extraembryonic tissue.
Figure 4Up-regulated apoptotic marker proteins in the SCNT extraembryonic tissue. (A) The expression of Bax and Hsp27 were up-regulated and the Bcl2 expression was down-regulated in the SCNT extraembryonic tissue. Actin was used as a loading control. (B) Dnmt1 was highly expressed in the control extraembryonic tissue while the expression of Dnmt3a and 3b Dnmt3a and 3b were highly detectable in the SCNT extraembryonic tissue. (C) TUNEL assays in the control and SCNT extraembryonic tissue. Dewaxed paraffin sections from the control and SCNT extraembryonic tissue were subjected to the TUNEL assay. Fragmented DNAs were detected by a TUNEL assay using a fluorescence microscope with either propidium iodide (PI) (left) or FITC (FITC-dUTP) (right). In normal extraembryonic tissue, apoptotic cells were rarely identified while apoptotic cells significantly increased in SCNT extraembryonic tissue. Magnification: control and SCNT extraembryonic tissue (x200).